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Yeasts / Model organisms / Saccharomycetes / Origin of replication / Pichia pastoris / Autonomously replicating sequence / P. pastoris / Nucleosome / Plasmid / Biology / Molecular biology / DNA replication


GC-Rich DNA Elements Enable Replication Origin Activity in the Methylotrophic Yeast Pichia pastoris Ivan Liachko1, Rachel A. Youngblood1, Kyle Tsui2,3, Kerry L. Bubb1, Christine Queitsch1, M. K. Raghuraman1, Corey Nislow
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Document Date: 2014-04-30 15:34:52


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File Size: 4,42 MB

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City

Toronto / /

Company

IDT / Pearson / ACS / Creative Commons / Donnelly / Integrated DNA Technologies / /

Country

United States / Canada / /

Currency

ARS / pence / /

/

Event

Company Expansion / /

Facility

University of Washington / National Institute of General Medical Sciences / University of Toronto / Origin Recognition Complex / /

IndustryTerm

motif discovery algorithms / genetic and molecular tools / selective media / replication initiation machinery / lithium acetate protocol / de novo motif discovery tool / truncation products / mg/mL fish sperm carrier / /

MarketIndex

set 120 / /

Organization

Department of Molecular Genetics / National Institute of Health / NIH / University of Toronto / Toronto / National Science Foundation / Rutgers New Jersey Medical School / Department of Pharmaceutical Sciences / Canadian Cancer Society / University of Washington / Seattle / Donnelly Centre / National Institute of General Medical Sciences / Department of Genome Sciences / /

Person

James Cregg / /

Position

original author / Editor / Pichia pastoris Author / /

Product

mutARS / polyethylene glycol / miniARS / /

ProgrammingLanguage

php / Python / /

ProvinceOrState

Washington / /

PublishedMedium

PLOS Genetics / /

TVStation

Kyle / /

Technology

genomics / lithium acetate protocol / Electrophoresis / sliding windows / gene expression / directed mutagenesis / MEME algorithm / motif discovery algorithms / Cloning / simulation / MAST algorithm / gel electrophoresis / FIMO algorithm / /

URL

http /

SocialTag