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Species: Danio rerio
Genetic Insert: wnt8
Vector Backbone Description: Backbone Size:4100; Vector Backbone:pCS2P+ (modified pCS2+); Vector Types:; Bacterial Resistance:Ampicillin
Comments: ORF2 amplified from pBand 3-5 ligated into BamHI-StuI cut CS2P+.
For Sense RNA: cut with Asp718 I and transcribe with SP6 polymerase.
Plasmid History:
Species of Sequence Origin: Zebrafish.
Proper citation: RRID:Addgene_17049 Copy
Species: Homo sapiens
Genetic Insert: Lyn(N-lobe), iFKBP
Vector Backbone Description: Backbone Size:5000; Vector Backbone:pTriEx; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:30279442
Proper citation: RRID:Addgene_170484 Copy
Species: Homo sapiens
Genetic Insert: FRB, Lyn(C-lobe)
Vector Backbone Description: Backbone Size:5000; Vector Backbone:pTriEx; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:30279442
Proper citation: RRID:Addgene_170485 Copy
Species: Homo sapiens
Genetic Insert: TUBA1B
Vector Backbone Description: Backbone Marker:Thermo Fisher; Backbone Size:5238; Vector Backbone:pFastBac Dual; Vector Types:Insect Expression; Bacterial Resistance:Ampicillin
Defining Citation: PMID:30245156
Comments: See Ti et al. STAR Protocol from 2020 (citation below) for details on expression and purification.
Ti SC, Wieczorek M, Kapoor TM. Purification of Affinity Tag-free Recombinant Tubulin from Insect Cells. STAR Protoc. 2020 Jun 19;1(1):100011. doi: 10.1016/j.xpro.2019.100011. Epub 2020 Jun 3. PMID: 32783031; PMCID: PMC7416841.
Proper citation: RRID:Addgene_170553 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-TESK1
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_170614 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-CDKL5
Vector Backbone Description: Backbone Marker:PEL; Backbone Size:9019; Vector Backbone:pDest663; Vector Types:Mammalian Expression, Lentiviral, Gateway Destination; Bacterial Resistance:Ampicillin
Comments: Depositor confirms E854G in CDKL5 does not affect plasmid function.
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_170578 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-STK33
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_170611 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-STK38L
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_170612 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-TSSK3
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_170617 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-TSSK1B
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_170616 Copy
Species: Mus musculus
Genetic Insert: PLIN2
Vector Backbone Description: Backbone Size:9594; Vector Backbone:pLenti CMV/TO Puro DEST; Vector Types:Mammalian Expression, Lentiviral; Bacterial Resistance:Ampicillin
Defining Citation: PMID:29275994
Proper citation: RRID:Addgene_170573 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-PRKACB
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_170602 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-STK32A
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_170608 Copy
Vector Backbone Description: Backbone Size:6943; Vector Types:Worm Expression; Bacterial Resistance:Ampicillin
Comments: See Fire Lab Vector Kit Documentation 2005. Fire Lab Miniprep Number pPD160.60, Ligation number L5876.
Proper citation: RRID:Addgene_1706 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-RNASEL
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_170604 Copy
Species: Homo sapiens
Genetic Insert: miniTurbo-V5-RPS6KL1
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_170605 Copy
Vector Backbone Description: Backbone Size:5409; Vector Backbone:pJCX4; Vector Types:Mammalian Expression; Bacterial Resistance:Kanamycin
Defining Citation: PMID:34478714
Comments: Please visit https://www.biorxiv.org/content/10.1101/2021.04.05.438513v2 for BioRxiv preprint
Proper citation: RRID:Addgene_170756 Copy
Species: Vibrio cholera
Genetic Insert: VchTniQ, VchCas8, VchCas7, VchCas6, CRISPR(8+IS186 array)
Vector Backbone Description: Vector Backbone:pUC19; Vector Types:Bacterial Expression; Bacterial Resistance:Streptomycin
Defining Citation: PMID:34152213
Proper citation: RRID:Addgene_170636 Copy
Species: Vibrio cholera
Genetic Insert: VchTniQ, VchCas8, VchCas7, VchCas6, CRISPR(BsaI)
Vector Backbone Description: Vector Backbone:pCDFDuet-1; Vector Types:Bacterial Expression; Bacterial Resistance:Streptomycin
Defining Citation: PMID:34152213
Proper citation: RRID:Addgene_170633 Copy
Species: Mus musculus
Genetic Insert: eGFP-P2A-2xHA-dTAG
Vector Backbone Description: Backbone Size:2686; Vector Backbone:pUC19; Vector Types:Mouse Targeting; Bacterial Resistance:Ampicillin
Defining Citation: PMID:34151298
Proper citation: RRID:Addgene_170754 Copy
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