Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.
| Plasmid Name | Proper Citation | Insert Name | Organism | Bacterial Resistance | Defining Citation |
Comments |
||||
|---|---|---|---|---|---|---|---|---|---|---|
|
pBbA8a-RFP Resource Report Resource Website |
RRID:Addgene_35271 | RFP | Synthetic | Ampicillin | PMID:21933410 | JBEI Part ID: JPUB_000037; Origin: p15A | Backbone Size:3327; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 0 | |
|
pBbE8k-RFP Resource Report Resource Website 1+ mentions |
RRID:Addgene_35270 | RFP | Synthetic | Kanamycin | PMID:21933410 | JBEI Part ID: JPUB_000036; Origin: colE1 | Backbone Size:3281; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Kanamycin | 2026-08-15 01:13:59 | 5 | |
|
pBbS8a-RFP Resource Report Resource Website |
RRID:Addgene_35274 | RFP | Synthetic | Ampicillin | PMID:21933410 | JBEI Part ID: JPUB_000040; Origin: SC101 | Backbone Size:4749; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 0 | |
|
pBbE8c-RFP Resource Report Resource Website |
RRID:Addgene_35269 | RFP | Synthetic | Chloramphenicol | PMID:21933410 | JBEI Part ID: JPUB_000035; Origin: colE1 | Backbone Size:3126; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Chloramphenicol | 2026-08-15 01:13:59 | 0 | |
|
pBbE8a-RFP Resource Report Resource Website 1+ mentions |
RRID:Addgene_35268 | RFP | Synthetic | Ampicillin | PMID:21933410 | JBEI Part ID: JPUB_000034; Origin: colE1 | Backbone Size:3340; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 1 | |
|
pBbS4a-RFP Resource Report Resource Website 1+ mentions |
RRID:Addgene_35301 | RFP | Synthetic | Ampicillin | PMID:21933410 | JBEI Part ID: JPUB_000067; Origin: SC101 | Backbone Size:5360; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 1 | |
|
pBbE3k-RFP Resource Report Resource Website |
RRID:Addgene_35306 | RFP | Synthetic | Kanamycin | PMID:21933410 | JBEI Part ID: JPUB_000072; Origin: colE1 | Backbone Size:3957; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Kanamycin | 2026-08-15 01:13:59 | 0 | |
|
pBbS4k-RFP Resource Report Resource Website |
RRID:Addgene_35303 | RFP | Synthetic | Kanamycin | PMID:21933410 | JBEI Part ID: JPUB_000069; Origin: SC101 | Backbone Size:5301; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Kanamycin | 2026-08-15 01:13:59 | 0 | |
|
TarsierMER20MER39 Resource Report Resource Website |
RRID:Addgene_35261 | MER20/MER39 | Tarsius bancanus | Ampicillin | PMID:22733751 | Backbone Marker:Promega; Backbone Size:4000; Vector Backbone:PGL4.70; Vector Types:Luciferase; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 0 | ||
|
mouseMER77 Resource Report Resource Website |
RRID:Addgene_35262 | MER77 | Mus musculus | Ampicillin | Backbone Marker:Promega; Backbone Size:4000; Vector Backbone:PGL4.70; Vector Types:Luciferase; Bacterial Resistance:Ampicillin | 2026-08-15 01:13:59 | 0 | |||
|
pBbA3c-RFP Resource Report Resource Website |
RRID:Addgene_35308 | RFP | Synthetic | Chloramphenicol | PMID:21933410 | JBEI Part ID: JPUB_000074; Origin: p15A | Backbone Size:3789; Vector Backbone:pBb; Vector Types:Bacterial Expression, Synthetic Biology; Bacterial Resistance:Chloramphenicol | 2026-08-15 01:13:59 | 0 | |
|
colobusMER20MER39 Resource Report Resource Website |
RRID:Addgene_35258 | MER20/MER39 | Colobus guereza | Ampicillin | PMID:22733751 | Backbone Marker:Promega; Backbone Size:4000; Vector Backbone:PGL4.70; Vector Types:Luciferase; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 0 | ||
|
orangutanMER20MER39 Resource Report Resource Website |
RRID:Addgene_35257 | MER20/MER39 | Pongo pygmaeus | Ampicillin | PMID:22733751 | Backbone Marker:Promega; Backbone Size:4000; Vector Backbone:PGL4.70; Vector Types:Luciferase; Bacterial Resistance:Ampicillin | 2026-08-15 01:13:59 | 0 | ||
|
elephant.dPRL Resource Report Resource Website |
RRID:Addgene_35255 | dPRL promoter for elephant | Loxodonta africana | Ampicillin | PMID:21813467 | Backbone Marker:Promega; Backbone Size:4000; Vector Backbone:PGL4.70; Vector Types:Luciferase; Bacterial Resistance:Ampicillin | 2026-08-15 01:14:05 | 0 | ||
|
MIGS3.2 (FF574) Resource Report Resource Website |
RRID:Addgene_35250 | Chloramphenicol and Spectinomycin | PMID:22211571 | MIGS vectors are based on pGREEN series: Hellens, R.P., Edwards, E.A., Leyland, N.R., Bean, S. and Mullineaux, P.M. (2000) pGreen: a versatile and flexible binary Ti vector for Agrobacterium-mediated plant transformation. Plant Mol. Biol., 42, 819-832. http://www.pgreen.ac.uk/ obtained from John Innes Centre, UK | Backbone Size:9506; Vector Backbone:pGreenII; Vector Types:Plant Expression; Bacterial Resistance:Chloramphenicol and Spectinomycin | 2026-08-15 01:13:59 | 0 | |||
|
MIGS5.1 (FF572) Resource Report Resource Website |
RRID:Addgene_35253 | Chloramphenicol and Spectinomycin | PMID:22211571 | MIGS vectors are based on pGREEN series: Hellens, R.P., Edwards, E.A., Leyland, N.R., Bean, S. and Mullineaux, P.M. (2000) pGreen: a versatile and flexible binary Ti vector for Agrobacterium-mediated plant transformation. Plant Mol. Biol., 42, 819-832. http://www.pgreen.ac.uk/ obtained from John Innes Centre, UK | Backbone Size:7773; Vector Backbone:pGreenII; Vector Types:Plant Expression; Bacterial Resistance:Chloramphenicol and Spectinomycin | 2026-08-15 01:13:59 | 0 | |||
|
MIGS2.1 (FF570) Resource Report Resource Website |
RRID:Addgene_35247 | Chloramphenicol and Spectinomycin | PMID:22211571 | MIGS vectors are based on pGREEN series: Hellens, R.P., Edwards, E.A., Leyland, N.R., Bean, S. and Mullineaux, P.M. (2000) pGreen: a versatile and flexible binary Ti vector for Agrobacterium-mediated plant transformation. Plant Mol. Biol., 42, 819-832. http://www.pgreen.ac.uk/ obtained from John Innes Centre, UK | Backbone Size:9298; Vector Backbone:pGreenII; Vector Types:Plant Expression; Bacterial Resistance:Chloramphenicol and Spectinomycin | 2026-08-15 01:13:59 | 0 | |||
|
si:ch211-221n23.1_R (OZ604) Resource Report Resource Website |
RRID:Addgene_35244 | Zinc finger array targeting si:ch211-221n23.1 | Danio rerio | Kanamycin | PMID:18657511 | This plasmid encodes a zinc finger array targeting half of a target sequence in the zebrafish gene si:ch211-221n23.1. Please note that this plasmid does NOT contain the si:ch211-221n23.1 sequence. Users must order the complementary plasmid si:ch211-221n23.1_L (OZ603) [Addgene plasmid 35243] in order to create a zinc finger nuclease (ZFN) pair to introduce targeted mutations into this specific zebrafish gene. Users will also need to clone the zinc finger (ZF) insert of this plasmid into a zinc finger nuclease (ZFN) vector to express a FOKI fusion product. Examples of possible ZFN expression vectors that can be used are: pST1374 (Addgene plasmid 13426), pMLM290/292 (Addgene plasmids 21872 & 21873), pMLM800/802 (Addgene plasmids 27202 & 27203). The difference between pMLM800/802 and pMLM290/292 is the length of the “spacer” sequence in the full ZFN target site. If the spacer is 7 bp, scientists should use pMLM800/802. If the spacer is 5 or 6 bps, scientists should use pMLM290/292. pMLM290/292 is identical to pST1374 except that it harbors two mutations in the FokI nuclease domain (Q486E, I499L; aka the “-“ mutation see Miller et al., Nat. Biotech 2007, PMID 17603475) which confers heterodimeric behavior on these domains This zinc finger array was tested for binding activity to the sequence 5'-GCTGCAGAG-3' in a bacterial two hybrid assay, and resulted in 9.9 fold activation. However, this array has not yet been tested for activity as a zinc finger nuclease (i.e. for its ability to induce mutations at the intended locus). Scientists using this zinc finger array in a publication should notify [email protected] and acknowledge NIH grant number R01 GM088040 in the publication. Other Articles: "Oligomerized pool engineering (OPEN): an 'open-source' protocol for making customized zinc-finger arrays." Maeder ML et al. (Nat Protoc. 2009 Sept 17. 4(10):1471-1501. Pubmed ID: 19798082) "Targeted mutagenesis in zebrafish using customized zinc-finger nucleases." Foley JE et al. (Nat Protoc. 2009 Dec 3. 4(12):1855-1867. Pubmed ID: 20010934) | Backbone Size:5493; Vector Backbone:MG414; Vector Types:Zebrafish Targeting; Bacterial Resistance:Kanamycin | 2026-08-15 01:13:59 | 0 | |
|
si:ch211-221n23.1_L (OZ603) Resource Report Resource Website |
RRID:Addgene_35243 | Zinc finger array targeting si:ch211-221n23.1 | Danio rerio | Kanamycin | PMID:18657511 | This plasmid encodes a zinc finger array targeting half of a target sequence in the zebrafish gene si:ch211-221n23.1. Please note that this plasmid does NOT contain the si:ch211-221n23.1 sequence. Users must order the complementary plasmid si:ch211-221n23.1_R (OZ604) [Addgene plasmid 35244] in order to create a zinc finger nuclease (ZFN) pair to introduce targeted mutations into this specific zebrafish gene. Users will also need to clone the zinc finger (ZF) insert of this plasmid into a zinc finger nuclease (ZFN) vector to express a FOKI fusion product. Examples of possible ZFN expression vectors that can be used are: pST1374 (Addgene plasmid 13426), pMLM290/292 (Addgene plasmids 21872 & 21873), pMLM800/802 (Addgene plasmids 27202 & 27203). The difference between pMLM800/802 and pMLM290/292 is the length of the “spacer” sequence in the full ZFN target site. If the spacer is 7 bp, scientists should use pMLM800/802. If the spacer is 5 or 6 bps, scientists should use pMLM290/292. pMLM290/292 is identical to pST1374 except that it harbors two mutations in the FokI nuclease domain (Q486E, I499L; aka the “-“ mutation see Miller et al., Nat. Biotech 2007, PMID 17603475) which confers heterodimeric behavior on these domains This zinc finger array was tested for binding activity to the sequence 5'-GCAGTTGCG-3' in a bacterial two hybrid assay, and resulted in 9.5 fold activation. However, this array has not yet been tested for activity as a zinc finger nuclease (i.e. for its ability to induce mutations at the intended locus). Scientists using this zinc finger array in a publication should notify [email protected] and acknowledge NIH grant number R01 GM088040 in the publication. Other Articles: "Oligomerized pool engineering (OPEN): an 'open-source' protocol for making customized zinc-finger arrays." Maeder ML et al. (Nat Protoc. 2009 Sept 17. 4(10):1471-1501. Pubmed ID: 19798082) "Targeted mutagenesis in zebrafish using customized zinc-finger nucleases." Foley JE et al. (Nat Protoc. 2009 Dec 3. 4(12):1855-1867. Pubmed ID: 20010934) | Backbone Size:5493; Vector Backbone:MG414; Vector Types:Zebrafish Targeting; Bacterial Resistance:Kanamycin | 2026-08-15 01:14:05 | 0 | |
|
panx2_R (OZ602) Resource Report Resource Website |
RRID:Addgene_35242 | Zinc finger array targeting panx2 | Danio rerio | Kanamycin | PMID:18657511 | This plasmid encodes a zinc finger array targeting half of a target sequence in the zebrafish gene panx2. Please note that this plasmid does NOT contain the panx2 sequence. Users must order the complementary plasmid panx2_L (OZ601) [Addgene plasmid 35241] in order to create a zinc finger nuclease (ZFN) pair to introduce targeted mutations into this specific zebrafish gene. Users will also need to clone the zinc finger (ZF) insert of this plasmid into a zinc finger nuclease (ZFN) vector to express a FOKI fusion product. Examples of possible ZFN expression vectors that can be used are: pST1374 (Addgene plasmid 13426), pMLM290/292 (Addgene plasmids 21872 & 21873), pMLM800/802 (Addgene plasmids 27202 & 27203). The difference between pMLM800/802 and pMLM290/292 is the length of the “spacer” sequence in the full ZFN target site. If the spacer is 7 bp, scientists should use pMLM800/802. If the spacer is 5 or 6 bps, scientists should use pMLM290/292. pMLM290/292 is identical to pST1374 except that it harbors two mutations in the FokI nuclease domain (Q486E, I499L; aka the “-“ mutation see Miller et al., Nat. Biotech 2007, PMID 17603475) which confers heterodimeric behavior on these domains This zinc finger array was tested for binding activity to the sequence 5'-GTGGTAGCA-3' in a bacterial two hybrid assay, and resulted in 15.7 fold activation. However, this array has not yet been tested for activity as a zinc finger nuclease (i.e. for its ability to induce mutations at the intended locus). Scientists using this zinc finger array in a publication should notify [email protected] and acknowledge NIH grant number R01 GM088040 in the publication. Other Articles: "Oligomerized pool engineering (OPEN): an 'open-source' protocol for making customized zinc-finger arrays." Maeder ML et al. (Nat Protoc. 2009 Sept 17. 4(10):1471-1501. Pubmed ID: 19798082) "Targeted mutagenesis in zebrafish using customized zinc-finger nucleases." Foley JE et al. (Nat Protoc. 2009 Dec 3. 4(12):1855-1867. Pubmed ID: 20010934) | Backbone Size:5493; Vector Backbone:MG414; Vector Types:Zebrafish Targeting; Bacterial Resistance:Kanamycin | 2026-08-15 01:13:59 | 0 |
Can't find your Plasmid?
We recommend that you click next to the search bar to check some helpful tips on searches and refine your search firstly. If you want to find a specific plasmid, it's easier to enter an RRID or an Addgene Catalog Number to search. You can refine the search results using Facets on the left side of the search results page. If you are on the table view, you can also search in a specific column by clicking the column title and enter the keywords.
If you still could not find your plasmid in the search results, please help us by registering it into the system — it's easy. Register it with Addgene.
Welcome to the RRID Resources search. From here you can search through a compilation of resources used by RRID and see how data is organized within our community.
You are currently on the Community Resources tab looking through categories and sources that RRID has compiled. You can navigate through those categories from here or change to a different tab to execute your search through. Each tab gives a different perspective on data.
If you have an account on RRID then you can log in from here to get additional features in RRID such as Collections, Saved Searches, and managing Resources.
Here is the search term that is being executed, you can type in anything you want to search for. Some tips to help searching:
If you are logged into RRID you can add data records to your collections to create custom spreadsheets across multiple sources of data.
Here are the facets that you can filter the data by.
If you have any further questions please check out our FAQs Page to ask questions and see our tutorials. Click this button to view this tutorial again.