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| Plasmid Name | Proper Citation | Insert Name | Organism | Bacterial Resistance | Defining Citation |
Comments |
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pBAD His6 TEV LIC transfer vector (8BT) Resource Report Resource Website |
RRID:Addgene_48279 | Ampicillin | This plasmid is an empty vector. Your gene can be inserted via LIC cloning. 8-series vectors are induced with L-arabinose for tighter control of expression. Glucose can be added to the medium to further inhibit leaky expression. The plasmid can be expressed in any E. coli line that lacks proteases.8BT adds a TEV-cleavable His6 tag to the N-terminus of your protein. To clone into this vector, add LIC v1 tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify.When digesting the DNA with T4 polymerase, use dCTP for insert and dGTP for vector. This vector is a transfer vector that can be used in conjunction with the 8D destination vector to create a polycistronic construct. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:5742; Vector Backbone:pBAD; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 0 | ||||
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pET StrepII TEV expression vector with BioBrick polypromoter restriction sites (14-R) Resource Report Resource Website |
RRID:Addgene_48312 | Ampicillin | This plasmid is an empty vector to be used with a LIC cloning protocol. It has a TEV cleavable StrepII tag on the N-terminus and Amp resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The Series-14 plasmids were designed to overcome the unpredictable expression patterns of genes from a polycistronic message. As mentioned in the Series-2 and Series-9 polycistronic sections, often genes that express well from a single gene mRNA do not express at the same level when placed in a polycistronic message next to other genes. This effect is likely due to mRNA structure interfering with access to the ribosome binding site. When we first made our polypromoter plasmids we found that we could clone multiple genes together in the Xl1-Blue cells so that each possess a T7 promoter, followed by a Lac operator, followed by a ribosome binding site, followed by your open reading frame (T7-LacO-RBS-yORF). However, these multi-gene polypromoter plasmids were unable to be transformed into an expression strain such as BL-21 or Rosetta2. We then figured out that we needed a RecAexpression strain (like Rosetta-Blues) to successfully propagate our polypromoter plasmids. Although Rosetta-Blue cells propagated our plasmids, expression was not so great and we didn't want to rely on a specialized strain to perform our expression. Finally, we figured out that it was the LacO that follows the T7 promoter that was causing plasmid instability in our polypromoter system. Removal of the LacO allowed us to express our polypromoter plasmids in Rosetta2 cells and we have had much success with these plasmids since. Much like our Series- 2 plasmids, the Series-14 plasmids are going to give a substantial amount of leaky expression. However, even with this shortcoming, we have found Series-14 to be a valuable resource for expressing multi-protein complexes. Cloning into the Series-14 plasmids and subsequent biobrick subcloning is performed exactly as described for the Series-9 plasmids. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:3071; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 0 | ||||
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pET His6 Sumo TEV expression vector with BioBrick polypromoter restriction sites (14-S) Resource Report Resource Website 1+ mentions |
RRID:Addgene_48313 | Ampicillin | This plasmid is an empty vector to be used with a LIC cloning protocol.It has a TEV cleavable His6 Sumo tag on the N-terminus and Amp resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The Series-14 plasmids were designed to overcome the unpredictable expression patterns of genes from a polycistronic message. As mentioned in the Series-2 and Series-9 polycistronic sections, often genes that express well from a single gene mRNA do not express at the same level when placed in a polycistronic message next to other genes. This effect is likely due to mRNA structure interfering with access to the ribosome binding site. When we first made our polypromoter plasmids we found that we could clone multiple genes together in the Xl1-Blue cells so that each possess a T7 promoter, followed by a Lac operator, followed by a ribosome binding site, followed by your open reading frame (T7-LacO-RBS-yORF). However, these multi-gene polypromoter plasmids were unable to be transformed into an expression strain such as BL-21 or Rosetta2. We then figured out that we needed a RecAexpression strain (like Rosetta-Blues) to successfully propagate our polypromoter plasmids. Although Rosetta-Blue cells propagated our plasmids, expression was not so great and we didn't want to rely on a specialized strain to perform our expression. Finally, we figured out that it was the LacO that follows the T7 promoter that was causing plasmid instability in our polypromoter system. Removal of the LacO allowed us to express our polypromoter plasmids in Rosetta2 cells and we have had much success with these plasmids since. Much like our Series- 2 plasmids, the Series-14 plasmids are going to give a substantial amount of leaky expression. However, even with this shortcoming, we have found Series-14 to be a valuable resource for expressing multi-protein complexes. Cloning into the Series-14 plasmids and subsequent biobrick subcloning is performed exactly as described for the Series-9 plasmids. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:3371; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 1 | ||||
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pET His6 StrepII TEV co-transformation cloning vector (13K-HR) Resource Report Resource Website 1+ mentions |
RRID:Addgene_48318 | Kanamycin | This plasmid is an empty vector to be used with a LIC cloning protocol.It has a TEV cleavable His6-StrepII fusion tag on the N-terminus and a Kan resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The 13-series vectors were designed to enable rapid cloning for a co-expression system. Vectors are based on Novagen's Duet system. Each gene is expressed on its own vector, which has been optimized so that each gene expresses at approximately equal levels. The 13-series vectors are all compatible with 2-series transfer vectors, so if cotransformation fails, there is a readily available backup in polycistronic expression. 13S CDF origin SpecR13K ColA origin KanR2-series transfer ColE1 origin AmpR13S vectors must be cotransformed with a 2-series vector for optimal expression (that is, the presence of an empty 2A-T vector enhances expression of a gene in 13S). For triple expressions, the proteins all seem to express at approximately equal levels. Genes in the CDF vector consistently express at very slightly lower levels, so if you're trying to pull down stoichiometric complexes, it's probably best to put His6-fusion protein in this vector. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:3612; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:15:49 | 6 | ||||
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pET StrepII TEV co-transformation cloning vector (13K-R) Resource Report Resource Website 1+ mentions |
RRID:Addgene_48319 | Kanamycin | This plasmid is an empty vector to be used with a LIC cloning protocol. It has a TEV cleavable StrepII fusion tag on the N-terminus and a Kan resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The 13-series vectors were designed to enable rapid cloning for a co-expression system. Vectors are based on Novagen's Duet system. Each gene is expressed on its own vector, which has been optimized so that each gene expresses at approximately equal levels. The 13-series vectors are all compatible with 2-series transfer vectors, so if cotransformation fails, there is a readily available backup in polycistronic expression. 13S CDF origin SpecR13K ColA origin KanR2-series transfer ColE1 origin AmpR13S vectors must be cotransformed with a 2-series vector for optimal expression (that is, the presence of an empty 2A-T vector enhances expression of a gene in 13S). For triple expressions, the proteins all seem to express at approximately equal levels. Genes in the CDF vector consistently express at very slightly lower levels, so if you're trying to pull down stoichiometric complexes, it's probably best to put His6-fusion protein in this vector. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:3576; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:15:49 | 9 | ||||
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pET His6 MBP TEV co-transformation cloning vector (13K-C) Resource Report Resource Website |
RRID:Addgene_48317 | Kanamycin | This plasmid is an empty vector to be used with a LIC cloning protocol. It has a TEV cleavable His6-MBP fusion tag on the N-terminus and a Kan resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The 13-series vectors were designed to enable rapid cloning for a co-expression system. Vectors are based on Novagen's Duet system. Each gene is expressed on its own vector, which has been optimized so that each gene expresses at approximately equal levels. The 13-series vectors are all compatible with 2-series transfer vectors, so if cotransformation fails, there is a readily available backup in polycistronic expression. 13S CDF origin SpecR13K ColA origin KanR2-series transfer ColE1 origin AmpR13S vectors must be cotransformed with a 2-series vector for optimal expression (that is, the presence of an empty 2A-T vector enhances expression of a gene in 13S). For triple expressions, the proteins all seem to express at approximately equal levels. Genes in the CDF vector consistently express at very slightly lower levels, so if you're trying to pull down stoichiometric complexes, it's probably best to put His6-fusion protein in this vector. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:4731; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:15:49 | 0 | ||||
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pET His6 Mocr TEV expression vector with BioBrick polypromoter restriction sites (14-O) Resource Report Resource Website |
RRID:Addgene_48310 | Ampicillin | This plasmid is an empty vector to be used with a LIC cloning protocol. It has a TEV cleavable His6-Mocr tag on the N-terminus and Amp resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The Series-14 plasmids were designed to overcome the unpredictable expression patterns of genes from a polycistronic message. As mentioned in the Series-2 and Series-9 polycistronic sections, often genes that express well from a single gene mRNA do not express at the same level when placed in a polycistronic message next to other genes. This effect is likely due to mRNA structure interfering with access to the ribosome binding site. When we first made our polypromoter plasmids we found that we could clone multiple genes together in the Xl1-Blue cells so that each possess a T7 promoter, followed by a Lac operator, followed by a ribosome binding site, followed by your open reading frame (T7-LacO-RBS-yORF). However, these multi-gene polypromoter plasmids were unable to be transformed into an expression strain such as BL-21 or Rosetta2. We then figured out that we needed a RecAexpression strain (like Rosetta-Blues) to successfully propagate our polypromoter plasmids. Although Rosetta-Blue cells propagated our plasmids, expression was not so great and we didn't want to rely on a specialized strain to perform our expression. Finally, we figured out that it was the LacO that follows the T7 promoter that was causing plasmid instability in our polypromoter system. Removal of the LacO allowed us to express our polypromoter plasmids in Rosetta2 cells and we have had much success with these plasmids since. Much like our Series- 2 plasmids, the Series-14 plasmids are going to give a substantial amount of leaky expression. However, even with this shortcoming, we have found Series-14 to be a valuable resource for expressing multi-protein complexes. Cloning into the Series-14 plasmids and subsequent biobrick subcloning is performed exactly as described for the Series-9 plasmids. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:3430; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 0 | ||||
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pET MBP TEV expression vector with BrioBrick polypromoter restriction sites (14-Q) Resource Report Resource Website 1+ mentions |
RRID:Addgene_48311 | Ampicillin | This plasmid is an empty vector to be used with a LIC cloning protocol. It has a TEV cleavable MBP tag on the N-terminus and Amp resistance. To clone into this vector, add LIC fusion tags to the 5' end of your PCR primers. Forward - 5'TACTTCCAATCCAATGCA3' Reverse - 5'TTATCCACTTCCAATGTTATTA3' Linearize the plasmid with SspI and gel purify. When digesting the DNA with T4 polymerase for LIC, use dCTP for insert and dGTP for vector. The Series-14 plasmids were designed to overcome the unpredictable expression patterns of genes from a polycistronic message. As mentioned in the Series-2 and Series-9 polycistronic sections, often genes that express well from a single gene mRNA do not express at the same level when placed in a polycistronic message next to other genes. This effect is likely due to mRNA structure interfering with access to the ribosome binding site. When we first made our polypromoter plasmids we found that we could clone multiple genes together in the Xl1-Blue cells so that each possess a T7 promoter, followed by a Lac operator, followed by a ribosome binding site, followed by your open reading frame (T7-LacO-RBS-yORF). However, these multi-gene polypromoter plasmids were unable to be transformed into an expression strain such as BL-21 or Rosetta2. We then figured out that we needed a RecAexpression strain (like Rosetta-Blues) to successfully propagate our polypromoter plasmids. Although Rosetta-Blue cells propagated our plasmids, expression was not so great and we didn't want to rely on a specialized strain to perform our expression. Finally, we figured out that it was the LacO that follows the T7 promoter that was causing plasmid instability in our polypromoter system. Removal of the LacO allowed us to express our polypromoter plasmids in Rosetta2 cells and we have had much success with these plasmids since. Much like our Series- 2 plasmids, the Series-14 plasmids are going to give a substantial amount of leaky expression. However, even with this shortcoming, we have found Series-14 to be a valuable resource for expressing multi-protein complexes. Cloning into the Series-14 plasmids and subsequent biobrick subcloning is performed exactly as described for the Series-9 plasmids. More information on this vector can be found through http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:4151; Vector Backbone:pET; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 1 | ||||
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Gal1/10 His6 TEV Ura S. cerevisiae expression vector (12URA-B) Resource Report Resource Website 1+ mentions |
RRID:Addgene_48304 | Ampicillin | Note: The full plasmid sequence displayed here is theoretical and may not be entirely accurate. Addgene's quality control sequencing has identified some discrepancies with the sequence, but they do not impact the plasmid's function. This plasmid is a LIC-adapted S. cerevisiae vector. It uses the same PCR primer tags as with most of our other vectors, so one PCR product can be inserted into many different vectors at once. This vector has a TEV cleavable His6 tag on the N-terminus and can complement Ura auxotrophy. Add the following tags to your PCR primers: LicV1 Forward Tag TACTTCCAATCCAATGCA(ATG) LicV1 Reverse Tag TTATCCACTTCCAATGTTATTA Linearize this plasmid with SspI and gel purify the product, then T4-treat with dGTP. For the PCR product, T4-treat with dCTP.Series 12 vectors are galactose inducible (using the Gal 1/10 promoter). The plasmids are cloned and propagated in E. coli. Plasmids are available to complement the Ade, Trp, or Ura auxotrophies. The Ade, Trp, and Ura plasmids can co-exist in the same yeast cell with no compatibility issues. We have successfully expressed 3 proteins from these 3 plasmids in the same strain (BCY123: Ade-, Trp-, Ura-).For more information, please see our website: http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:8937; Vector Backbone:pRS426; Vector Types:NA; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 4 | ||||
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Gal1/10 His6-MBP TEV Trp S. cerevisiae expression vector (12TRP-C) Resource Report Resource Website |
RRID:Addgene_48302 | Ampicillin | Note: The full plasmid sequence displayed here is theoretical and may not be entirely accurate. Addgene's quality control sequencing has identified some discrepancies with the sequence, but they do not impact the plasmid's function. This plasmid is a LIC-adapted S. cerevisiae vector. It uses the same PCR primer tags as with most of our other vectors, so one PCR product can be inserted into many different vectors at once. This vector has a TEV cleavable His6-MBP tag on the N-terminus and can complement Trp auxotrophy. Add the following tags to your PCR primers: LicV1 Forward Tag TACTTCCAATCCAATGCA(ATG) LicV1 Reverse Tag TTATCCACTTCCAATGTTATTA Linearize this plasmid with SspI and gel purify the product, then T4-treat with dGTP. For the PCR product, T4-treat with dCTP. Series 12 vectors are galactose inducible (using the Gal 1/10 promoter). The plasmids are cloned and propagated in E. coli. Plasmids are available to complement the Ade, Trp, or Ura auxotrophies. The Ade, Trp, and Ura plasmids can co-exist in the same yeast cell with no compatibility issues. We have successfully expressed 3 proteins from these 3 plasmids in the same strain (BCY123: Ade-, Trp-, Ura-). For more information, please see our website: http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:7773; Vector Backbone:pRS424; Vector Types:NA; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 0 | ||||
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Gal1/10 His6-MBP TEV Ura S. cerevisiae expression vector (12URA-C) Resource Report Resource Website 1+ mentions |
RRID:Addgene_48305 | Ampicillin | Note: The full plasmid sequence displayed here is theoretical and may not be entirely accurate. Addgene's quality control sequencing has identified some discrepancies with the sequence, but they do not impact the plasmid's function. This plasmid is a LIC-adapted S. cerevisiae vector. It uses the same PCR primer tags as with most of our other vectors, so one PCR product can be inserted into many different vectors at once. This vector has a TEV cleavable His6-MBP tag on the N-terminus and can complement Ura auxotrophy. Add the following tags to your PCR primers: LicV1 Forward Tag TACTTCCAATCCAATGCA(ATG) LicV1 Reverse Tag TTATCCACTTCCAATGTTATTA Linearize this plasmid with SspI and gel purify the product, then T4-treat with dGTP. For the PCR product, T4-treat with dCTP. Series 12 vectors are galactose inducible (using the Gal 1/10 promoter). The plasmids are cloned and propagated in E. coli. Plasmids are available to complement the Ade, Trp, or Ura auxotrophies. The Ade, Trp, and Ura plasmids can co-exist in the same yeast cell with no compatibility issues. We have successfully expressed 3 proteins from these 3 plasmids in the same strain (BCY123: Ade-, Trp-, Ura-). For more information, please see our website: http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:10092; Vector Backbone:pRS426; Vector Types:NA; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 2 | ||||
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Gal1/10 Ura S. cerevisiae expression vector (12URA-U) Resource Report Resource Website |
RRID:Addgene_48306 | Ampicillin | Note: The full plasmid sequence displayed here is theoretical and may not be entirely accurate. Addgene's quality control sequencing has identified some discrepancies with the sequence, but they do not impact the plasmid's function. This plasmid is a LIC-adapted S. cerevisiae vector. It uses the same PCR primer tags as with most of our other vectors, so one PCR product can be inserted into many different vectors at once. This vector can complement Ura auxotrophy. Add the following tags to your PCR primers: Note: You must add an ATG to the beginning of your open reading frame. LICvBac Forward Tag TACTTCCAATCCAATCG LicV1 Reverse Tag TTATCCACTTCCAATGTTATTA Linearize this plasmid with SspI and gel purify the product, then T4-treat with dGTP. For the PCR product, T4-treat with dCTP. Series 12 vectors are galactose inducible (using the Gal 1/10 promoter). The plasmids are cloned and propagated in E. coli. Plasmids are available to complement the Ade, Trp, or Ura auxotrophies. The Ade, Trp, and Ura plasmids can co-exist in the same yeast cell with no compatibility issues. We have successfully expressed 3 proteins from these 3 plasmids in the same strain (BCY123: Ade-, Trp-, Ura-). For more information, please see our website: http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:8878; Vector Backbone:pRS426; Vector Types:NA; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 0 | ||||
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pJH104 Resource Report Resource Website |
RRID:Addgene_48262 | TEF1p 5' fragment | Saccharomyces cerevisiae | Ampicillin | PMID:24604451 | Created by 4-part ligation with XhoI/EagI cut pBluescript II SK (-). Inserts were XhoI/XbaI TEF1p, XbaI/BamHI URA3, and BamHI/EagI TEF1p. | Backbone Marker:Agilent Technologies; Backbone Size:2961; Vector Backbone:pBluescript II SK (-); Vector Types:Routine cloning vector; Bacterial Resistance:Ampicillin | From SK1 background. -460 to -128 relative to TEF1 ORF | 2026-08-15 01:15:48 | 0 |
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Gal1/10 Ade S. cerevisiae expression vector (12ADE-U) Resource Report Resource Website |
RRID:Addgene_48300 | Ampicillin | Note: The full plasmid sequence displayed here is theoretical and may not be entirely accurate. Addgene's quality control sequencing has identified some discrepancies with the sequence, but they do not impact the plasmid's function. This plasmid is a LIC-adapted S. cerevisiae vector. It uses the same PCR primer tags as with most of our other vectors, so one PCR product can be inserted into many different vectors at once. This vector can complement Ade auxotrophy. Add the following tags to your PCR primers: Note: You must add an ATG to the beginning of your open reading frame. LICvBac Forward Tag TACTTCCAATCCAATCG LicV1 Reverse Tag TTATCCACTTCCAATGTTATTA Linearize this plasmid with SspI and gel purify the product, then T4-treat with dGTP. For the PCR product, T4-treat with dCTP. Series 12 vectors are galactose inducible (using the Gal 1/10 promoter). The plasmids are cloned and propagated in E. coli. Plasmids are available to complement the Ade, Trp, or Ura auxotrophies. The Ade, Trp, and Ura plasmids can co-exist in the same yeast cell with no compatibility issues. We have successfully expressed 3 proteins from these 3 plasmids in the same strain (BCY123: Ade-, Trp-, Ura-). For more information, please see our website: http://qb3.berkeley.edu/qb3/macrolab/ | Backbone Size:8429; Vector Backbone:pRS422; Vector Types:NA; Bacterial Resistance:Ampicillin | 2026-08-15 01:15:49 | 0 | ||||
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pJH124 Resource Report Resource Website |
RRID:Addgene_48259 | URA3 3' fragment | Saccharomyces cerevisiae | Ampicillin | PMID:24604451 | pJH124 was created by cloning an XbaI/XhoI Ag TEF1 promoter fragment into the same sites of vector IpO. The cloned insert was confirmed by DNA sequencing. | Backbone Marker:Agilent Technologies; Backbone Size:2961; Vector Backbone:pBluescript II SK (-); Vector Types:Routine cloning vector; Bacterial Resistance:Ampicillin | URA3 ORF from +216 to 80 bp downstream of the stop codon | 2026-08-15 01:15:49 | 0 |
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PXNGW Resource Report Resource Website |
RRID:Addgene_48258 | Chloramphenicol and Spectinomycin | PMID:19366901 | Vector Backbone:pRT100/pPZP312; Vector Types:Binary Gateway vector; Bacterial Resistance:Chloramphenicol and Spectinomycin | 2026-08-15 01:15:48 | 0 | ||||
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pC1-HyPer-Red-C199S Resource Report Resource Website 1+ mentions |
RRID:Addgene_48252 | HYPER-RED-C199S | Synthetic | Kanamycin | PMID:25330925 | Backbone Size:3975; Vector Backbone:pC1; Vector Types:Mammalian Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:15:48 | 3 | ||
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pAC154-dual-dCas9VP160-sgExpression Resource Report Resource Website 10+ mentions |
RRID:Addgene_48240 | dCas9 | Synthetic | Ampicillin | PMID:23979020 | Clone sgRNA spacer into BbsI site. Sequence using LKO5' primer: GACTATCATATGCTTACCGT For more information including protocols and updates, please go to http://www.crispr-on.org | Vector Backbone:pX335 (Addgene #42335); Vector Types:Mammalian Expression, CRISPR; Bacterial Resistance:Ampicillin | D10A H840A | 2026-08-15 01:15:48 | 24 |
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pET29b-ClbP Resource Report Resource Website 1+ mentions |
RRID:Addgene_48244 | ClbP | Escherichia coli CFT073 | Kanamycin | PMID:23406518 | Backbone Marker:Novagen; Backbone Size:5370; Vector Backbone:pET29b-(+); Vector Types:Bacterial Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:15:48 | 2 | ||
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pET29b-ClbPpep-CHis Resource Report Resource Website |
RRID:Addgene_48243 | ClbP-pep | Escherichia coli CFT073 | Kanamycin | PMID:23406518 | Backbone Marker:Novagen; Backbone Size:5370; Vector Backbone:pET29b-(+); Vector Types:Bacterial Expression; Bacterial Resistance:Kanamycin | First 375 amino acids of the peptidase, which contains the soluble periplasmic peptidase domain | 2026-08-15 01:15:48 | 0 |
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