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Species: Homo sapiens
Genetic Insert: RPL22
Vector Backbone Description: Vector Backbone:pLV; Vector Types:Lentiviral; Bacterial Resistance:Ampicillin
Defining Citation: PMID:32516938
Proper citation: RRID:Addgene_170325 Copy
Species: Homo sapiens
Genetic Insert: RPL22
Vector Backbone Description: Vector Backbone:pLV; Vector Types:Lentiviral; Bacterial Resistance:Ampicillin
Defining Citation: PMID:32516938
Proper citation: RRID:Addgene_170326 Copy
Species: SARS-CoV-1
Genetic Insert: SARS-CoV-1 spike D28
Vector Backbone Description: Backbone Size:5500; Vector Backbone:pcDNA3.3; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:32540903
Proper citation: RRID:Addgene_170447 Copy
Genetic Insert: human LMX1A
Vector Backbone Description: Backbone Marker:System Biosciences; Backbone Size:7424; Vector Backbone:pCDH-EF1a-T2A-copGFP; Vector Types:Lentiviral; Bacterial Resistance:Ampicillin
Defining Citation: PMID:33597231
Proper citation: RRID:Addgene_170444 Copy
Species: Homo sapiens
Genetic Insert: RPL22
Vector Backbone Description: Vector Backbone:pFUGW; Vector Types:Lentiviral; Bacterial Resistance:Ampicillin
Defining Citation: PMID:32516938
Proper citation: RRID:Addgene_170324 Copy
Vector Backbone Description: Backbone Size:4771; Vector Types:Worm Expression; Bacterial Resistance:Ampicillin
Comments: See Fire Lab Vector Kit Documentation 2005. Fire Lab Miniprep Number pPD152.79, Ligation number L5494.
Proper citation: RRID:Addgene_1704 Copy
Species: Homo sapiens
Genetic Insert: RORG isoform 2
Vector Backbone Description: Backbone Marker:LifeSensor; Backbone Size:5476; Vector Backbone:pESUMO; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:34547329
Proper citation: RRID:Addgene_170329 Copy
Species: Drosophila melanogaster
Genetic Insert: dre4
Vector Backbone Description: Backbone Marker:Invitrogen; Backbone Size:7440; Vector Backbone:pET-DEST42; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:31242411
Comments: The expressed his-tagged protein, pET-DEST42-dre4 (deleted amino acids 1-20) was efficiently bound to CNBR beads during the affinity purification of the antibodies.
Proper citation: RRID:Addgene_170440 Copy
Vector Backbone Description: Backbone Size:12778; Vector Backbone:pAC; Vector Types:Insect Expression, CRISPR; Bacterial Resistance:Ampicillin
Defining Citation: PMID:33782117
Comments: For more information about the Han Lab Drosophila Transgenic Vectors, please visit: https://han.wicmb.cornell.edu/han-lab-drosophila-transgenic-vectors/
Proper citation: RRID:Addgene_170515 Copy
Species: Synthetic
Genetic Insert: S. pyogenes sgRNA cassette
Vector Backbone Description: Backbone Marker:Feng Zhang lab (Addgene plasmid #52963); Vector Backbone:lentiGuide-Puro; Vector Types:Mammalian Expression, Lentiviral, CRISPR; Bacterial Resistance:Ampicillin
Comments: Plasmid based on lentiGuide Puro (addgene plasmid #52963).
Please visit https://www.biorxiv.org/content/10.1101/2021.03.02.433398v1 for bioRxiv preprint.
Proper citation: RRID:Addgene_170510 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-PIP4K2C
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: These plasmids were generated as part of the Illuminating the Druggable Genome (IDG) program sponsored by the NIH Common Fund. The goal of this program is to identify, gather, and distribute information and resources for proteins that currently are not well-studied yet belong to commonly drug-targeted protein families: protein kinases, non-olfactory G-protein coupled receptors (GPCRs), and ion channels. The IDG program is designed to develop fundamental research tools for understudied proteins, elucidate their function, and disseminate the IDG-related resources and data to the greater scientific community. These lentiviral gateway destination plasmids were generated, as part of the Kinase-Data and Resource Generating Center (DRGC), using the single fragment or multisite gateway cloning technology. They were used for generating proteomics-based protein-interaction and protein-proximity networks that can be accessed through the kinase-DRGC website https://darkkinome.org/. Each plasmid has either an N- or C-terminal fusion protein (Flag/ V5/V5-miniTurbo/V5-TurboID/miniTurbo-V5/TurboID-V5) tagged understudied kinase driven under either a CMV or Ubiquitin (UBC) promoter. All inserts in the pENTR plasmids used to generate the deposited destination plasmids were end-sequenced and insert size validated prior to multi-site gateway cloning. The combined insert size of the single fragment or three fragment destination plasmids were confirmed by restriction digestion (BsrGI, and EcoRV for pDest667; BsrGI, EcoRV, and BstZ17I for pDest663; and BsrGI for pHAGE) and all plasmids were partially sequenced to ensure in-frame ORFs and fusion tags.
Proper citation: RRID:Addgene_170598 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-PIP5K1B
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: These plasmids were generated as part of the Illuminating the Druggable Genome (IDG) program sponsored by the NIH Common Fund. The goal of this program is to identify, gather, and distribute information and resources for proteins that currently are not well-studied yet belong to commonly drug-targeted protein families: protein kinases, non-olfactory G-protein coupled receptors (GPCRs), and ion channels. The IDG program is designed to develop fundamental research tools for understudied proteins, elucidate their function, and disseminate the IDG-related resources and data to the greater scientific community. These lentiviral gateway destination plasmids were generated, as part of the Kinase-Data and Resource Generating Center (DRGC), using the single fragment or multisite gateway cloning technology. They were used for generating proteomics-based protein-interaction and protein-proximity networks that can be accessed through the kinase-DRGC website https://darkkinome.org/. Each plasmid has either an N- or C-terminal fusion protein (Flag/ V5/V5-miniTurbo/V5-TurboID/miniTurbo-V5/TurboID-V5) tagged understudied kinase driven under either a CMV or Ubiquitin (UBC) promoter. All inserts in the pENTR plasmids used to generate the deposited destination plasmids were end-sequenced and insert size validated prior to multi-site gateway cloning. The combined insert size of the single fragment or three fragment destination plasmids were confirmed by restriction digestion (BsrGI, and EcoRV for pDest667; BsrGI, EcoRV, and BstZ17I for pDest663; and BsrGI for pHAGE) and all plasmids were partially sequenced to ensure in-frame ORFs and fusion tags.
Proper citation: RRID:Addgene_170599 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-PIK3C2G
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: These plasmids were generated as part of the Illuminating the Druggable Genome (IDG) program sponsored by the NIH Common Fund. The goal of this program is to identify, gather, and distribute information and resources for proteins that currently are not well-studied yet belong to commonly drug-targeted protein families: protein kinases, non-olfactory G-protein coupled receptors (GPCRs), and ion channels. The IDG program is designed to develop fundamental research tools for understudied proteins, elucidate their function, and disseminate the IDG-related resources and data to the greater scientific community. These lentiviral gateway destination plasmids were generated, as part of the Kinase-Data and Resource Generating Center (DRGC), using the single fragment or multisite gateway cloning technology. They were used for generating proteomics-based protein-interaction and protein-proximity networks that can be accessed through the kinase-DRGC website https://darkkinome.org/. Each plasmid has either an N- or C-terminal fusion protein (Flag/ V5/V5-miniTurbo/V5-TurboID/miniTurbo-V5/TurboID-V5) tagged understudied kinase driven under either a CMV or Ubiquitin (UBC) promoter. All inserts in the pENTR plasmids used to generate the deposited destination plasmids were end-sequenced and insert size validated prior to multi-site gateway cloning. The combined insert size of the single fragment or three fragment destination plasmids were confirmed by restriction digestion (BsrGI, and EcoRV for pDest667; BsrGI, EcoRV, and BstZ17I for pDest663; and BsrGI for pHAGE) and all plasmids were partially sequenced to ensure in-frame ORFs and fusion tags.
Proper citation: RRID:Addgene_170597 Copy
Species: Danio rerio
Genetic Insert: tiggywinkle hedgehog
Vector Backbone Description: Backbone Size:0; Vector Backbone:NA; Vector Types:; Bacterial Resistance:Ampicillin
Comments: twhh under control of CMV promoter.
Proper citation: RRID:Addgene_17060 Copy
Species: Synthetic
Genetic Insert: CAG-mCherry
Vector Backbone Description: Vector Backbone:pXL-BacII; Vector Types:Mammalian Expression, piggyBAC transposon; Bacterial Resistance:Ampicillin
Defining Citation: PMID:34458399
Comments: More information can be found in this additional reference: Yamagata M, Yan W, Sanes JR. A cell atlas of the chick retina based on single-cell transcriptomics. Elife. 2021 Jan 4;10:e63907. doi: 10.7554/eLife.63907. PMID: 33393903; PMCID: PMC7837701.
Proper citation: RRID:Addgene_170519 Copy
Species: Danio rerio
Genetic Insert: wnt8 pBand3-5
Vector Backbone Description: Backbone Marker:Promega; Backbone Size:3000; Vector Backbone:pGemT easy; Vector Types:; Bacterial Resistance:Ampicillin
Defining Citation: PMID:11703928
Comments: RT PCR prodct ligated into vector full length cDNA cloned includes ORF1, IRES and ORF2.
For antiense RNA: transcribe with SP6 polymerase.
Plasmid History:
Species of Sequence Origin: Zebrafish.
Reference: Lekven, Dev Cell, 2001.
Proper citation: RRID:Addgene_17053 Copy
Species: Danio rerio
Genetic Insert: pax b
Vector Backbone Description: Backbone Size:3000; Vector Backbone:SP64T; Vector Types:Zebrafish Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:7586754
Comments: Insert: pax b sense or antisense orientation.
Insert size: 1.18 Kb.
Transcription: linearize at EcoR1, transcribe with SP6.
Plasmid History:
Constructed by Greg Kelly on date of 9/21/92, page 118 Book 1.
Sepecies of Sequence Origin: Zebrafish.
Note for Use:
This construct is used to make DIG probes or for making RNA suitable for injections.
Citation: Kelly and Moon, Developmental Genetics (1995)
Proper citation: RRID:Addgene_17056 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-MKNK2
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: These plasmids were generated as part of the Illuminating the Druggable Genome (IDG) program sponsored by the NIH Common Fund. The goal of this program is to identify, gather, and distribute information and resources for proteins that currently are not well-studied yet belong to commonly drug-targeted protein families: protein kinases, non-olfactory G-protein coupled receptors (GPCRs), and ion channels. The IDG program is designed to develop fundamental research tools for understudied proteins, elucidate their function, and disseminate the IDG-related resources and data to the greater scientific community. These lentiviral gateway destination plasmids were generated, as part of the Kinase-Data and Resource Generating Center (DRGC), using the single fragment or multisite gateway cloning technology. They were used for generating proteomics-based protein-interaction and protein-proximity networks that can be accessed through the kinase-DRGC website https://darkkinome.org/. Each plasmid has either an N- or C-terminal fusion protein (Flag/ V5/V5-miniTurbo/V5-TurboID/miniTurbo-V5/TurboID-V5) tagged understudied kinase driven under either a CMV or Ubiquitin (UBC) promoter. All inserts in the pENTR plasmids used to generate the deposited destination plasmids were end-sequenced and insert size validated prior to multi-site gateway cloning. The combined insert size of the single fragment or three fragment destination plasmids were confirmed by restriction digestion (BsrGI, and EcoRV for pDest667; BsrGI, EcoRV, and BstZ17I for pDest663; and BsrGI for pHAGE) and all plasmids were partially sequenced to ensure in-frame ORFs and fusion tags.
Proper citation: RRID:Addgene_170594 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-EEF2K
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: These plasmids were generated as part of the Illuminating the Druggable Genome (IDG) program sponsored by the NIH Common Fund. The goal of this program is to identify, gather, and distribute information and resources for proteins that currently are not well-studied yet belong to commonly drug-targeted protein families: protein kinases, non-olfactory G-protein coupled receptors (GPCRs), and ion channels. The IDG program is designed to develop fundamental research tools for understudied proteins, elucidate their function, and disseminate the IDG-related resources and data to the greater scientific community. These lentiviral gateway destination plasmids were generated, as part of the Kinase-Data and Resource Generating Center (DRGC), using the single fragment or multisite gateway cloning technology. They were used for generating proteomics-based protein-interaction and protein-proximity networks that can be accessed through the kinase-DRGC website https://darkkinome.org/. Each plasmid has either an N- or C-terminal fusion protein (Flag/ V5/V5-miniTurbo/V5-TurboID/miniTurbo-V5/TurboID-V5) tagged understudied kinase driven under either a CMV or Ubiquitin (UBC) promoter. All inserts in the pENTR plasmids used to generate the deposited destination plasmids were end-sequenced and insert size validated prior to multi-site gateway cloning. The combined insert size of the single fragment or three fragment destination plasmids were confirmed by restriction digestion (BsrGI, and EcoRV for pDest667; BsrGI, EcoRV, and BstZ17I for pDest663; and BsrGI for pHAGE) and all plasmids were partially sequenced to ensure in-frame ORFs and fusion tags.
Proper citation: RRID:Addgene_170592 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-MKNK1
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: These plasmids were generated as part of the Illuminating the Druggable Genome (IDG) program sponsored by the NIH Common Fund. The goal of this program is to identify, gather, and distribute information and resources for proteins that currently are not well-studied yet belong to commonly drug-targeted protein families: protein kinases, non-olfactory G-protein coupled receptors (GPCRs), and ion channels. The IDG program is designed to develop fundamental research tools for understudied proteins, elucidate their function, and disseminate the IDG-related resources and data to the greater scientific community. These lentiviral gateway destination plasmids were generated, as part of the Kinase-Data and Resource Generating Center (DRGC), using the single fragment or multisite gateway cloning technology. They were used for generating proteomics-based protein-interaction and protein-proximity networks that can be accessed through the kinase-DRGC website https://darkkinome.org/. Each plasmid has either an N- or C-terminal fusion protein (Flag/ V5/V5-miniTurbo/V5-TurboID/miniTurbo-V5/TurboID-V5) tagged understudied kinase driven under either a CMV or Ubiquitin (UBC) promoter. All inserts in the pENTR plasmids used to generate the deposited destination plasmids were end-sequenced and insert size validated prior to multi-site gateway cloning. The combined insert size of the single fragment or three fragment destination plasmids were confirmed by restriction digestion (BsrGI, and EcoRV for pDest667; BsrGI, EcoRV, and BstZ17I for pDest663; and BsrGI for pHAGE) and all plasmids were partially sequenced to ensure in-frame ORFs and fusion tags.
Proper citation: RRID:Addgene_170593 Copy
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