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Addgene

pPdR
(Plasmid #85083)

Ordering

This material is available to academics and nonprofits only.
Item Catalog # Description Quantity Price (USD)
Plasmid 85083 Standard format: Plasmid sent in bacteria as agar stab 1 $85

Backbone

  • Vector backbone
    pET-28b(+)
  • Backbone manufacturer
    Merck Millipore
  • Backbone size w/o insert (bp) 5333
  • Total vector size (bp) 6602
  • Modifications to backbone
    N/A
  • Vector type
    Bacterial Expression

Growth in Bacteria

  • Bacterial Resistance(s)
    Kanamycin, 50 μg/mL
  • Growth Temperature
    37°C
  • Growth Strain(s)
    DH5alpha
  • Copy number
    Low Copy

Gene/Insert

  • Gene/Insert name
    Putidaredoxin reductase
  • Alt name
    PdR
  • Species
    Synthetic; Pseudomonas putida
  • Insert Size (bp)
    1269
  • GenBank ID
    AAA25758.1
  • Promoter T7 promoter
  • Tag / Fusion Protein
    • His6 tag (N terminal on backbone)

Cloning Information

  • Cloning method Restriction Enzyme
  • 5′ cloning site NdeI (not destroyed)
  • 3′ cloning site BamHI (not destroyed)
  • 5′ sequencing primer T7
  • 3′ sequencing primer T7 Terminal
  • (Common Sequencing Primers)

Terms and Licenses

  • Academic/Nonprofit Terms
  • Industry Terms
    • Not Available to Industry
Trademarks:
  • Zeocin® is an InvivoGen trademark.

Depositor Comments

The PdR gene was subcloned from a synthetic gene whose codons are optimized for E. coli expression.

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:

    pPdR was a gift from Teruyuki Nagamune (Addgene plasmid # 85083 ; http://n2t.net/addgene:85083 ; RRID:Addgene_85083)
  • For your References section:

    Immobilization of a Bacterial Cytochrome P450 Monooxygenase System on a Solid Support. Tan CY, Hirakawa H, Suzuki R, Haga T, Iwata F, Nagamune T. Angew Chem Int Ed Engl. 2016 Oct 26. doi: 10.1002/anie.201608033. 10.1002/anie.201608033 PubMed 27781345