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DNA / Proteins / Transcription factors / RNA / Phylogenetic footprinting / DNA binding site / Promoter / Enhancer / Protein domain / Biology / Biochemistry / Gene expression


Large-Scale Turnover of Functional Transcription Factor Binding Sites in Drosophila Alan M. Moses1, Daniel A. Pollard1, David A. Nix2, Venky N. Iyer3, Xiao-Yong Li2, Mark D. Biggin2, Michael B. Eisen1,2,3,4* 1 Graduate G
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Document Date: 2009-08-09 15:41:46


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File Size: 1,29 MB

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City

Zeste / /

Company

IgG / Creative Commons / Affymetrix / /

Country

United States / /

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Event

Reorganization / /

Facility

University of California Berkeley / Stanford University / /

IndustryTerm

treatment chips / Online Release / amplification protocol / control chips / neutral site / studied systems / alignment algorithms / melanogaster species / computational tools / molecular machinery / /

Organization

Center for Integrative Genomics / University of California / Genomics Division / Ernest Orlando Lawrence Berkeley National Lab / Stanford University / /

Person

Mark D / Ernest Orlando Lawrence Berkeley / Halpern / /

Position

HB / www.ploscompbiol.org Editor / Fisher / /

Product

Zeste specificity / /

ProvinceOrState

California / /

PublishedMedium

PLoS Computational Biology / /

RadioStation

Moses AM / /

SportsLeague

Stanford University / /

Technology

Genomics / Closely Related Species Alignment algorithms / genome-wide ChIP / PCR amplification protocol / six treatment chips / hybridization / gene expression / three control chips / alignment algorithms / molecular evolution / simulation / control ChIP / /

URL

http /

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