Zara Y. Weinberg

2013-2017 Biological Sciences Carnegie Mellon University, Pittsburgh, PA 
 2017-2019 Pharmacology University of Michigan Medical School, Ann Arbor, MI, United States 
 2020- Biochemistry and Biophysics University of California, San Francisco, San Francisco, CA 
cell signaling, quantiative biology, synthetic biology, cell engineering
"Zara Weinberg"
Mean distance: 18.7 (cluster 11)


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Paul J. Currie research assistant 2008-2011 Reed College
Manoj A. Puthenveedu grad student 2013-2017 Carnegie Mellon
Hana El-Samad post-doc 2020- UCSF (Cell Biology Tree)
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Crilly SE, Ko W, Weinberg ZY, et al. (2021) Conformational specificity of opioid receptors is determined by subcellular location irrespective of agonist. Elife. 10
Crawford ED, Acosta I, Ahyong V, et al. (2020) Rapid deployment of SARS-CoV-2 testing: The CLIAHUB. Plos Pathogens. 16: e1008966
Bouley RA, Weinberg ZY, Waldschmidt HV, et al. (2020) A New Paroxetine-Based GRK2 Inhibitor Reduces Internalization of the μ-Opioid Receptor. Molecular Pharmacology
Kunselman JM, Zajac AS, Weinberg ZY, et al. (2019) Homologous regulation of mu opioid receptor recycling by Gβγ, Protein Kinase C, and receptor phosphorylation. Molecular Pharmacology
Stanczyk MA, Livingston KE, Chang L, et al. (2019) The delta opioid receptor positive allosteric modulator BMS 986187 is a G protein biased allosteric agonist. British Journal of Pharmacology
Weinberg ZY, Crilly SE, Puthenveedu MA. (2019) Spatial encoding of GPCR signaling in the nervous system. Current Opinion in Cell Biology. 57: 83-89
Weinberg ZY, Puthenveedu MA. (2019) Regulation of G protein-coupled receptor signaling by plasma membrane organization and endocytosis. Traffic (Copenhagen, Denmark). 20: 121-129
Weinberg ZY, Zajac AS, Phan T, et al. (2017) Sequence-specific regulation of endocytic lifetimes modulates arrestin-mediated signaling at the μ opioid receptor. Molecular Pharmacology
Chapman CD, Dono LM, French MC, et al. (2012) Paraventricular nucleus anandamide signaling alters eating and substrate oxidation. Neuroreport. 23: 425-9
Weinberg ZY, Nicholson ML, Currie PJ. (2011) 6-Hydroxydopamine lesions of the ventral tegmental area suppress ghrelin's ability to elicit food-reinforced behavior. Neuroscience Letters. 499: 70-3
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