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PCNA G3.1 gRNA
(Plasmid #90828)

Ordering

Item Catalog # Description Quantity Price (USD)
Plasmid 90828 Standard format: Plasmid sent in bacteria as agar stab 1 $75

This material is available to academics and nonprofits only.

Backbone

  • Vector backbone
    pLenti-sgRNA
  • Backbone manufacturer
    Eric Lander & David Sabatini labs (Addgene plasmid #71409)
  • Backbone size w/o insert (bp) 9151
  • Vector type
    Lentiviral, CRISPR
  • Selectable markers
    Puromycin

Growth in Bacteria

  • Bacterial Resistance(s)
    Ampicillin
  • Growth Temperature
    37°C
  • Growth Strain(s)
    NEB Stable
  • Copy number
    Unknown

Gene/Insert

  • Gene/Insert name
    PCNA (Guide Designation G3.1)
  • Alt name
    pKMKO series
  • gRNA/shRNA sequence
    CACCGCTCTGCAGGTTTACACCGC
  • Species
    H. sapiens (human)
  • Promoter U6

Cloning Information

  • Cloning method Restriction Enzyme
  • 5′ cloning site BsmBI (destroyed during cloning)
  • 3′ cloning site BsmBI (destroyed during cloning)
  • 5′ sequencing primer hU6-F (5'-GAGGGCCTATTTCCCATGATT-3')
  • 3′ sequencing primer EF1a-R (5'-CACGGCGACTACTGCACTTA-3')
  • (Common Sequencing Primers)

Resource Information

  • Terms and Licenses
  • Industry Terms
    • Not Available to Industry

Depositor Comments

Please note that gRNA target sequence listed is not strictly the 20nt spacer sequence, but also contains the 5' BsmBI overhang. For more information about knockout human cell lines generated using this plasmid, please see http://cellcycleknockouts.wi.mit.edu/ .

How to cite this plasmid ( Back to top)

These plasmids were created by your colleagues. Please acknowledge the Principal Investigator, cite the article in which the plasmids were described, and include Addgene in the Materials and Methods of your future publications.

  • For your Materials & Methods section:

    PCNA G3.1 gRNA was a gift from Iain Cheeseman (Addgene plasmid # 90828 ; http://n2t.net/addgene:90828 ; RRID:Addgene_90828)
  • For your References section:

    Large-Scale Analysis of CRISPR/Cas9 Cell-Cycle Knockouts Reveals the Diversity of p53-Dependent Responses to Cell-Cycle Defects. McKinley KL, Cheeseman IM. Dev Cell. 2017 Feb 27;40(4):405-420.e2. doi: 10.1016/j.devcel.2017.01.012. Epub 2017 Feb 16. 10.1016/j.devcel.2017.01.012 PubMed 28216383