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GTP-binding protein regulators / Enzymes / Cell signaling / Signal transduction / Guanine nucleotide exchange factor / Synaptotagmin / Phosphoinositide phospholipase C / Amyloid precursor protein / Protein domain / Biology / Cell biology / Peripheral membrane proteins


Mechanisms of Development[removed]–101 In vivo functional analysis of Drosophila Gap1: involvement of Ca2 + and IP4 regulation Allan C. Powe Jr. a, Douglas Strathdee a,c, Tyler Cutforth a , d, Trudy D’Souza-Corr
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Document Date: 2011-03-14 07:42:40


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City

Worcester / /

Company

McCormick / Elsevier Science Ireland Ltd. / /

Country

United States / United Kingdom / /

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Facility

Howard Hughes Medical Institute / Pennsylvania State University / Clark University / University Park / terminus of Gap1 / The Rockefeller University / Roslin Institute / Columbia University / Yale University / /

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IndustryTerm

biological systems / steady state degradation product / conserved tyrosine phosphorylation site / breakdown products / /

NaturalFeature

Whole mount / /

Organization

National Institute of Health / Rockefeller University / New York / Roslin Institute / Department of Veterinary Science / Department of Biology / Pennsylvania State University / Laboratory of Developmental Neurogenetics / Howard Hughes Medical Institute / Clark University / Yale University / Columbia University / New York / /

Person

Allan C. Powe Jr. / Ulrike Gaul / Jan / Justin Thackeray / John Carlson / A.C. Powe Jr. / Peter Gaines / Tyler Cutforth / Douglas Strathdee / /

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Position

second messenger / second messenger for intracellular Ca2 + release / Marshall / Corresponding author / /

ProvinceOrState

Pennsylvania / New York / Massachusetts / Connecticut / /

Technology

antibodies / genotype / /

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