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DNA / Protein domains / Biophysics / DNA-binding domain / Transcription factor / FUS / Cooperativity / Biology / Genetics / Molecular genetics


Evolution of DNA Specificity in a Transcription Factor Family Produced a New Gene Regulatory Module Alesia N. McKeown,1,4 Jamie T. Bridgham,1,4 Dave W. Anderson,1 Michael N. Murphy,3 Eric A. Ortlund,3 and Joseph W. Thorn
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Document Date: 2014-12-03 12:22:11


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File Size: 1,29 MB

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Cambridge University Press / The GenBank / RCSB Protein Data Bank / Alroy / TFs / Freedman L.P. / Bain / Elsevier Inc. / /

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United States / /

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pence / /

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Event

Product Issues / Movie Release / /

Facility

Scale bar / University of Oregon / DNA complex / University of Chicago / Emory University / /

IndustryTerm

reversible chemical denaturation / free energy / neutral network / ancestral signaling network / sequence site / gene regulatory networks / half-site / side chain / energy / require introducing a side chain / /

Movie

A.D. / /

Organization

Cambridge University / National Institute of Health / University of Oregon / University of Oregon ACISS / University of Chicago / Chicago / Emory University / Atlanta / Department of Human Genetics / /

Person

Mike Harms / Vincent Lynch / Pete von Hippel / Alesia N. McKeown / /

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Position

Howard Hughes Medical Institute Early Career Scientist / author / representative / reporter / /

Product

interactions / /

ProgrammingLanguage

ML / /

Technology

X-ray / thermodynamics / directed evolution / gene expression / crystallization / http / simulation / DNA binding / genotype / /

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http /

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