Searching the RRID Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

Preparing word cloud

×

Plasmids are provided by Addgene and DGRC.

Search

Type in a keyword to search

Filter by records added date
See new records

Options


Current Facets and Filters

  • Issues Status:no known issues (facet)

Facets


Recent searches

Snippet view Table view
Click the to add this resource to a Collection

739,423 Results - per page

Show More Columns | Download Top 1000 Results

Plasmid Name Proper Citation Insert Name Organism Bacterial Resistance Defining Citation Comments Vector Backbone Description Relevant Mutation Record Last Update Mentions Count
pCAGGS-mCherry
 
Resource Report
Resource Website
10+ mentions
RRID:Addgene_41583 Ampicillin PMID:22546613 Backbone Size:4790; Vector Backbone:pCAGGS; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin 2026-07-25 12:46:53 34
FLM-R4154C
 
Resource Report
Resource Website
RRID:Addgene_41580 PKD1 Homo sapiens Ampicillin PMID:21518865 Backbone Marker:Invitrogen; Backbone Size:5100; Vector Backbone:pcDNA4/TO; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin FLM R4136G 2026-07-25 12:46:53 0
pFA6a-kanMX6-PGAL1-GFP
 
Resource Report
Resource Website
RRID:Addgene_41614 GAL1 promoter Saccharomyces cerevisiae Ampicillin PMID:9717241 Vector Backbone:pFA6a; Vector Types:Yeast genomic targeting; Bacterial Resistance:Ampicillin 2026-07-25 12:46:54 0
FLM-R4136G
 
Resource Report
Resource Website
RRID:Addgene_41579 PKD1 Homo sapiens Ampicillin PMID:21518865 Backbone Marker:Invitrogen; Backbone Size:5100; Vector Backbone:pcDNA4/TO; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin FLM R4136G 2026-07-25 12:46:53 0
pFA6a-kanMX6-PGAL1-GST
 
Resource Report
Resource Website
RRID:Addgene_41611 GAL1 promoter Saccharomyces cerevisiae Ampicillin PMID:9717241 Vector Backbone:pFA6a; Vector Types:Yeast genomic targeting; Bacterial Resistance:Ampicillin 2026-07-25 12:46:54 0
pSH-hPXR-LBD-T248E
 
Resource Report
Resource Website
RRID:Addgene_41619 hPXR-LBD-T248E Homo sapiens Ampicillin Human PXR ligand binding domain (LBD, aa 107-434) was cloned into vector pSH. Mutations were made and confirmed by sequencing. Backbone Marker:ATCC (Item #77476); Backbone Size:5900; Vector Backbone:pSH; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin contains human PXR ligand binding domain (LBD, aa 107-434), T248E 2026-07-25 12:46:54 0
NTSP-PC1
 
Resource Report
Resource Website
RRID:Addgene_41575 PKD1 Homo sapiens Ampicillin PMID:21518865 5' cloning site: EcoR1 3' cloning site: XhoI Backbone Marker:Invitrogen; Backbone Size:5100; Vector Backbone:pcDNA4/TO; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin 4106-4218 of FLS PC1 2026-07-25 12:46:53 0
4xCSL-luciferase
 
Resource Report
Resource Website
10+ mentions
RRID:Addgene_41726 4xCSL binding sites Ampicillin PMID:11518718 The 4xCSL-luciferase reporter was constructed from the CBF1/pGL2-GLO TATA CAT plasmid, a gift from Dr. S. Speck. A fragment containing the multimerized high affinity CSL sites (4× CGTGGGAA) was excised by BamHI digest and ligated into a BglII/BamHI-digested RSV-TATA pGL2 vector, a gift from Dr. D. Towler. This modified vector has a TATA box from Rous sarcoma virus inserted into the pGL2-basic vector (Promega) to reduce the basal luciferase activity. Construct was sequenced for verification. Alternate plasmid name: 4xCBS-luciferase Backbone Marker:Dr. D. Towler (Washington University, St. Louis); Vector Backbone:RSV-TATA pGL2; Vector Types:Mammalian Expression, Luciferase; Bacterial Resistance:Ampicillin Contains a multimerized high affinity CSL binding site (4 x CGTGGGAA) 2026-07-25 12:46:55 22
Hes5-Luc
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41724 Hes5 Promoter Mus musculus Ampicillin PMID:9570950 Backbone Marker:Promega; Backbone Size:5597; Vector Backbone:pGL2-Basic; Vector Types:Mammalian Expression, Luciferase; Bacterial Resistance:Ampicillin Contains the murine Hes5 promoter (-800 to +73) 2026-07-25 12:46:55 7
pHes1(467)-luc
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41723 Hes1 Promoter (-467 to +46) Mus musculus Ampicillin PMID:9570950 Alternate plasmid name: Hes1-Luc Backbone Marker:Promega; Backbone Size:5597; Vector Backbone:pGL2-Basic; Vector Types:Mammalian Expression, Luciferase; Bacterial Resistance:Ampicillin Contains the murine Hes1 promoter (-467 to +46) 2026-07-25 12:46:55 8
pSKDuet26
 
Resource Report
Resource Website
RRID:Addgene_41689 Tvo VMA intein Thermoplasma volcanium Kanamycin PMID:22001202 Backbone Marker:novagen; Vector Backbone:pRSFDuet-1; Vector Types:Bacterial Expression; Bacterial Resistance:Kanamycin 2026-07-25 12:46:54 0
pSM1960
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41842 SEC63-mRFP Saccharomyces cerevisiae Ampicillin PMID:18812321 Please note that Addgene's quality control sequence shows several discrepancies with depositor's reference sequence. These are in vector region and should not affect function. Vector Backbone:pRS426; Vector Types:Yeast Expression; Bacterial Resistance:Ampicillin 2026-07-25 12:46:55 2
pRP
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41841 Ampicillin PMID:23852599 Backbone Marker:Invitrogen; Backbone Size:6577; Vector Backbone:pCDNA3; Vector Types:Mammalian Expression, Retroviral; Bacterial Resistance:Ampicillin 2026-07-25 12:46:55 3
pRLuc110UGA
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41729 RLuc110UGA Ampicillin PMID:19208811 Backbone Marker:Promega; Backbone Size:4079; Vector Backbone:pRL-CMV; Vector Types:Mammalian Expression, Luciferase; Bacterial Resistance:Ampicillin in-frame UGA stop codon at codon 110 in the open reading frame of the RLuc cDNA 2026-07-25 12:46:55 1
pcDNA3-N-I-N-CAAX
 
Resource Report
Resource Website
RRID:Addgene_41686 Dronpa145N-IntersectinDH-Dronpa145N-CAAX Homo sapiens Ampicillin PMID:23139335 Backbone Size:5370; Vector Backbone:pcDNA3; Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin K145N on Dronpa 2026-07-25 12:46:54 0
pRP_ASC-LmCerulean
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41840 apoptosis-associated speck-like protein containing CARD Homo sapiens Ampicillin PMID:23852599 Backbone Size:7332; Vector Backbone:pRP_LmCerulean; Vector Types:Mammalian Expression, Retroviral; Bacterial Resistance:Ampicillin Stop Codon removed 2026-07-25 12:46:55 6
pcDNA3.1(+)mGAT1-577-CFP-578CT
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41682 Mus musculus GABA transporter 1 Mus musculus Ampicillin PMID:19948998 To generate the fluorescent mutants mGAT10XFP and mGAT1XFP* through mGAT1XFP45, the wild-type mGAT1 open reading frame (ORF) was subcloned without its original stop codon into the HindIII and EcoRI sites of the pcDNA3.1(+) expression vector multiple cloning site (MCS). XFP ORFs were then subcloned downstream from and in frame with the mGAT1 ORF at the NotI and XbaI sites of the pcDNA3.1(+) MCS. This resulted in a 12–amino acid spacer between the end of the mGAT1 sequence and the beginning of the fluorophore. The depositors modified a method for the integration of PCR fragments without the use of restriction enzymes (Geiser et al., 2001) to add the final 3, 8, 20, 28, or 45 codons of the human GAT1 (hGAT1) ORF. These were amplified from a source plasmid using the proof-reading PfuTurbo Cx Hotstart polymerase with 5′ and 3′ extensions corresponding to the 20–22-nt regions that flanked the intended site of insertion, such that the PCR product integrated in-frame immediately after the fluorophore sequence when used as the primers in a subsequent QuikChange II XL mutagenesis PCR reaction. For mGAT1XFP*, the depositors simply added a GTC codon for Val after the fluorophore ORF. The attached image displays the protein sequences of the modified regions of mGAT1 for each fluorescent construct. mGAT10CFP and mGAT10YFP repeated the fusion design of mGAT10GFP but with the fluorophore exchanged as annotated. The three C-terminal residues of the mGAT0XFP fusions are -YKI-CO2−, which comprises a broadly defined consensus PDZ class II–interacting motif (X-φ-X-φ, where φ designates a hydrophobic residue and X any residue) (Sheng and Sala, 2001; Hung and Sheng, 2002). The depositors searched the Ensembl databases using Biomart (http://www.ebi.ac.uk/biomart) (Spudich et al., 2007) and applied the GO:0005886 “plasma membrane” cellular component filter. The search identified no known membrane proteins possessing the -YKI-CO2− C-terminal sequence. In the mGAT1XFP* constructs, the depositors defined the terminal residue P(0) more narrowly, changing the terminal isoleucine residue present in mGAT10XFP to a valine in mGAT1XFP*. The resulting C-terminal sequence, -YKV-CO2−, reconstituted a functional PDZ class II–interacting motif present in Ephrin B receptors, a class that relies on interactions with the PDZ domain–containing proteins for clustering (Torres et al., 1998; Brückner et al., 1999; Lin et al., 1999; Madsen et al., 2005). Other constructs in the C-terminal XFP fusion series, mGAT1XFP3, mGAT1XFP8, mGAT1XFP20, mGAT1XFP28, and mGAT1XFP45, had the most C-terminal 3, 8, 20, 28, or 45 residues of the hGAT1 appended after the mGAT1XFP fusion. The differences in nucleotide sequence between the hGAT1 and mGAT1 C termini were a useful source of positive identification when the depositors analyzed the clones during construction. PCR integration was applied to amplify and insert EYFP or ECFP directly between residues R565 and L566, I570 and Q571, or V577 and R578 of mGAT1 to generate the mGAT15xxXFP5xxCT constructs. The site of XFP insertion in GAT1 is highlighted in the nomenclatures for these constructs by residue numbers flanking the fluorophore, and the “CT” denotes that the insertion occurs within the C terminus. Please see the associated article for more detailed information regarding construct creation and usage. Backbone Marker:Invitrogen; Backbone Size:5428; Vector Backbone:pcDNA3.1(+); Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin “Monomerizing” CFP A206K mutation; CFP inserted directly between residues V577 and R578 of mGAT1 2026-07-25 12:46:54 1
pcDNA3.1(+)mGAT1-577-YFP-578CT
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41681 Mus musculus GABA transporter 1 Mus musculus Ampicillin PMID:19948998 To generate the fluorescent mutants mGAT10XFP and mGAT1XFP* through mGAT1XFP45, the wild-type mGAT1 open reading frame (ORF) was subcloned without its original stop codon into the HindIII and EcoRI sites of the pcDNA3.1(+) expression vector multiple cloning site (MCS). XFP ORFs were then subcloned downstream from and in frame with the mGAT1 ORF at the NotI and XbaI sites of the pcDNA3.1(+) MCS. This resulted in a 12–amino acid spacer between the end of the mGAT1 sequence and the beginning of the fluorophore. The depositors modified a method for the integration of PCR fragments without the use of restriction enzymes (Geiser et al., 2001) to add the final 3, 8, 20, 28, or 45 codons of the human GAT1 (hGAT1) ORF. These were amplified from a source plasmid using the proof-reading PfuTurbo Cx Hotstart polymerase with 5′ and 3′ extensions corresponding to the 20–22-nt regions that flanked the intended site of insertion, such that the PCR product integrated in-frame immediately after the fluorophore sequence when used as the primers in a subsequent QuikChange II XL mutagenesis PCR reaction. For mGAT1XFP*, the depositors simply added a GTC codon for Val after the fluorophore ORF. The attached image displays the protein sequences of the modified regions of mGAT1 for each fluorescent construct. mGAT10CFP and mGAT10YFP repeated the fusion design of mGAT10GFP but with the fluorophore exchanged as annotated. The three C-terminal residues of the mGAT0XFP fusions are -YKI-CO2−, which comprises a broadly defined consensus PDZ class II–interacting motif (X-φ-X-φ, where φ designates a hydrophobic residue and X any residue) (Sheng and Sala, 2001; Hung and Sheng, 2002). The depositors searched the Ensembl databases using Biomart (http://www.ebi.ac.uk/biomart) (Spudich et al., 2007) and applied the GO:0005886 “plasma membrane” cellular component filter. The search identified no known membrane proteins possessing the -YKI-CO2− C-terminal sequence. In the mGAT1XFP* constructs, the depositors defined the terminal residue P(0) more narrowly, changing the terminal isoleucine residue present in mGAT10XFP to a valine in mGAT1XFP*. The resulting C-terminal sequence, -YKV-CO2−, reconstituted a functional PDZ class II–interacting motif present in Ephrin B receptors, a class that relies on interactions with the PDZ domain–containing proteins for clustering (Torres et al., 1998; Brückner et al., 1999; Lin et al., 1999; Madsen et al., 2005). Other constructs in the C-terminal XFP fusion series, mGAT1XFP3, mGAT1XFP8, mGAT1XFP20, mGAT1XFP28, and mGAT1XFP45, had the most C-terminal 3, 8, 20, 28, or 45 residues of the hGAT1 appended after the mGAT1XFP fusion. The differences in nucleotide sequence between the hGAT1 and mGAT1 C termini were a useful source of positive identification when the depositors analyzed the clones during construction. PCR integration was applied to amplify and insert EYFP or ECFP directly between residues R565 and L566, I570 and Q571, or V577 and R578 of mGAT1 to generate the mGAT15xxXFP5xxCT constructs. The site of XFP insertion in GAT1 is highlighted in the nomenclatures for these constructs by residue numbers flanking the fluorophore, and the “CT” denotes that the insertion occurs within the C terminus. Please see the associated article for more detailed information regarding construct creation and usage. Backbone Marker:Invitrogen; Backbone Size:5428; Vector Backbone:pcDNA3.1(+); Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin “Monomerizing” YFP A206K mutation; YFP inserted directly between residues V577 and R578 of mGAT1 2026-07-25 12:46:54 1
pcDNA3.1(+)mGAT1-570-CFP-571CT
 
Resource Report
Resource Website
1+ mentions
RRID:Addgene_41680 Mus musculus GABA transporter 1 Mus musculus Ampicillin PMID:19948998 To generate the fluorescent mutants mGAT10XFP and mGAT1XFP* through mGAT1XFP45, the wild-type mGAT1 open reading frame (ORF) was subcloned without its original stop codon into the HindIII and EcoRI sites of the pcDNA3.1(+) expression vector multiple cloning site (MCS). XFP ORFs were then subcloned downstream from and in frame with the mGAT1 ORF at the NotI and XbaI sites of the pcDNA3.1(+) MCS. This resulted in a 12–amino acid spacer between the end of the mGAT1 sequence and the beginning of the fluorophore. The depositors modified a method for the integration of PCR fragments without the use of restriction enzymes (Geiser et al., 2001) to add the final 3, 8, 20, 28, or 45 codons of the human GAT1 (hGAT1) ORF. These were amplified from a source plasmid using the proof-reading PfuTurbo Cx Hotstart polymerase with 5′ and 3′ extensions corresponding to the 20–22-nt regions that flanked the intended site of insertion, such that the PCR product integrated in-frame immediately after the fluorophore sequence when used as the primers in a subsequent QuikChange II XL mutagenesis PCR reaction. For mGAT1XFP*, the depositors simply added a GTC codon for Val after the fluorophore ORF. The attached image displays the protein sequences of the modified regions of mGAT1 for each fluorescent construct. mGAT10CFP and mGAT10YFP repeated the fusion design of mGAT10GFP but with the fluorophore exchanged as annotated. The three C-terminal residues of the mGAT0XFP fusions are -YKI-CO2−, which comprises a broadly defined consensus PDZ class II–interacting motif (X-φ-X-φ, where φ designates a hydrophobic residue and X any residue) (Sheng and Sala, 2001; Hung and Sheng, 2002). The depositors searched the Ensembl databases using Biomart (http://www.ebi.ac.uk/biomart) (Spudich et al., 2007) and applied the GO:0005886 “plasma membrane” cellular component filter. The search identified no known membrane proteins possessing the -YKI-CO2− C-terminal sequence. In the mGAT1XFP* constructs, the depositors defined the terminal residue P(0) more narrowly, changing the terminal isoleucine residue present in mGAT10XFP to a valine in mGAT1XFP*. The resulting C-terminal sequence, -YKV-CO2−, reconstituted a functional PDZ class II–interacting motif present in Ephrin B receptors, a class that relies on interactions with the PDZ domain–containing proteins for clustering (Torres et al., 1998; Brückner et al., 1999; Lin et al., 1999; Madsen et al., 2005). Other constructs in the C-terminal XFP fusion series, mGAT1XFP3, mGAT1XFP8, mGAT1XFP20, mGAT1XFP28, and mGAT1XFP45, had the most C-terminal 3, 8, 20, 28, or 45 residues of the hGAT1 appended after the mGAT1XFP fusion. The differences in nucleotide sequence between the hGAT1 and mGAT1 C termini were a useful source of positive identification when the depositors analyzed the clones during construction. PCR integration was applied to amplify and insert EYFP or ECFP directly between residues R565 and L566, I570 and Q571, or V577 and R578 of mGAT1 to generate the mGAT15xxXFP5xxCT constructs. The site of XFP insertion in GAT1 is highlighted in the nomenclatures for these constructs by residue numbers flanking the fluorophore, and the “CT” denotes that the insertion occurs within the C terminus. Please see the associated article for more detailed information regarding construct creation and usage. Backbone Marker:Invitrogen; Backbone Size:5428; Vector Backbone:pcDNA3.1(+); Vector Types:Mammalian Expression; Bacterial Resistance:Ampicillin “Monomerizing” CFP A206K mutation; CFP inserted directly between residues I570 and Q571 of mGAT1 2026-07-25 12:46:54 1
pEXP5-NT-AlleyCat
 
Resource Report
Resource Website
RRID:Addgene_41715 mutated C-terminal portion of calmodulin gene (M76-K148) Gallus gallus Ampicillin PMID:21482808 Backbone Marker:Invitrogen; Backbone Size:2745; Vector Backbone:pEXP5-NT/TOPO; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin F92E 2026-07-25 12:46:55 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.

Can't find the RRID you're searching for? X
X
  1. PRECISE-TBI Resources

    Welcome to the PRECISE-TBI Resources search. From here you can search through a compilation of resources used by PRECISE-TBI and see how data is organized within our community.

  2. Navigation

    You are currently on the Community Resources tab looking through categories and sources that PRECISE-TBI 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.

  3. Logging in and Registering

    If you have an account on PRECISE-TBI then you can log in from here to get additional features in PRECISE-TBI such as Collections, Saved Searches, and managing Resources.

  4. Searching

    Here is the search term that is being executed, you can type in anything you want to search for. Some tips to help searching:

    1. Use quotes around phrases you want to match exactly
    2. You can manually AND and OR terms to change how we search between words
    3. You can add "-" to terms to make sure no results return with that term in them (ex. Cerebellum -CA1)
    4. You can add "+" to terms to require they be in the data
    5. Using autocomplete specifies which branch of our semantics you with to search and can help refine your search
  5. Collections

    If you are logged into PRECISE-TBI you can add data records to your collections to create custom spreadsheets across multiple sources of data.

  6. Facets

    Here are the facets that you can filter the data by.

  7. Further Questions

    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.