pJRL2 PHO5pr VYFP (EB#1547)
(Plasmid
#14840)
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Depositing Lab
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Publication
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Sequence Information
Ordering
Item | Catalog # | Description | Quantity | Price (USD) | |
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Plasmid | 14840 | Standard format: Plasmid sent in bacteria as agar stab | 1 | $85 |
Backbone
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Vector backbonepJRL2
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Vector typeYeast Expression
Growth in Bacteria
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Bacterial Resistance(s)Ampicillin, 100 μg/mL
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Growth Temperature37°C
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Growth Strain(s)DH5alpha
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Copy numberHigh Copy
Gene/Insert
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Gene/Insert namePHO5 promoter
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SpeciesS. cerevisiae (budding yeast)
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Entrez GenePHO5 (a.k.a. YBR093C)
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Tag
/ Fusion Protein
- VYFP (C terminal on insert)
Cloning Information
- Cloning method Restriction Enzyme
- 5′ sequencing primer n/a (Common Sequencing Primers)
Resource Information
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Article Citing this Plasmid
Terms and Licenses
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Academic/Nonprofit Terms
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Industry Terms
- Not Available to Industry
Trademarks:
- Zeocin® is an InvivoGen trademark.
Depositor Comments
pJRL2 is a yeast chromosomal integration vector that replaces the LEU2 chromosomal locus by homologous recombination. pJRL2 was constructed by insertion of the 200 bp upstream of the LEU2 start codon, an Asc I restriction enzyme site, the 200 bp downstream of the LEU2 stop codon and a 5.5 kb hisG::URA3::kanR::hisG cassette into pBluescript.
The contruct contains 1000 bp of promoter sequence, from the nucleotide immediately upstream of the start codon, followed by six base-pairs of idealized Kozak sequence AACAAA for optimal translational initiation, the coding sequence of the appropriate fluorophore (yECFP or yVYFP) and the 500 bp 3’ to the stop codon of ACT1 in the pJRL2 integrating vector.
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.
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For your Materials & Methods section:
pJRL2 PHO5pr VYFP (EB#1547) was a gift from Erin O'Shea (Addgene plasmid # 14840 ; http://n2t.net/addgene:14840 ; RRID:Addgene_14840) -
For your References section:
Control of stochasticity in eukaryotic gene expression. Raser JM, O'Shea EK. Science. 2004 Jun 18. 304(5678):1811-4. 10.1126/science.1098641 PubMed 15166317