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Pharmacology / Laboratory techniques / Cell signaling / Receptor antagonist / Assay / Estrogen receptor / Receptor / Homo sapiens / Agonist / Biology / Intracellular receptors / Transcription factors


Network Model of the Estrogen Receptor Pathway: Integrating a Battery of In Vitro HTS Assays Richard Judson(1), Felicia Maria Magpantay(2), Vijay Chickarmane(3), Cymra Haskell(4), Nessy Tania(5), Jean Taylor(6), Daniel R
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Document Date: 2013-04-10 16:29:19


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File Size: 1,35 MB

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City

Rockville / Toronto / /

Country

United States / Canada / /

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Facility

Courant Institute / Smith College / York University / NIH Chemical Genomics Center / California Institute of Technology / /

IndustryTerm

technology-specific assay interference / high-scoring chemicals / chemical similarity / pharmaceuticals / biological systems / chemical perturbations / potent and least potent chemicals / chemical classes / Chemical structure analysis / chemical / technology-specific assay activation / chemical structure / chemicals / active chemicals / chemical structures / /

Organization

California Institute of Technology / York University / NIH Chemical Genomics Center / Division of Biology / Smith College / Courant Institute / FDA / NYU / U.S. Environmental Protection Agency ACEA ESR1 Homo sapiens Office / Univ. of Southern California / Environmental Protection Agency / /

Person

Vijay Chickarmane / Jean Taylor / Matthew Martin / Nat / Richard Judson / Keith Houck / Ann Richard / Daniel Rotroff / Gene Color / Felicia Maria Magpantay / /

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Position

ESR1 Homo sapiens Reporter / Odyssey Thera ESR2 / ERE Homo sapiens Reporter / ATG_ERa_TRANS_perc Attagene ESR1 Homo sapiens RNA Reporter / RNA Reporter / ERE Homo sapiens Reporter / Proliferation Reporter / /

ProgrammingLanguage

Haskell / /

ProvinceOrState

Southern California / California / /

Region

Southern California / /

Technology

Chemical Genomics / DNA Binding / drug development / ATG / /

SocialTag