Paul D. Brewer, Ph.D.

Affiliations: 
2013 Biochemistry University of Nevada, Reno, Reno, NV, United States 
Area:
Biochemistry, Cell Biology
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Cynthia Mastick grad student 2013 University of Nevada, Reno
 (Insulin Regulated Glucose Transporter 4 Traffic: A Kinetic Perspective.)
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Publications

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Brewer PD, Romenskaia I, Mastick CC. (2018) A high-throughput chemical-genetics screen in murine adipocytes identifies insulin-regulatory pathways. The Journal of Biological Chemistry
Brewer PD, Habtemichael EN, Romenskaia I, et al. (2016) Rab14 Limits the Sorting of Glut4 from Endosomes into Insulin-Sensitive Regulated Secretory Compartments in Adipocytes. The Biochemical Journal
Brewer PD, Habtemichael EN, Romenskaia I, et al. (2015) Glut4 is Sorted from a Rab10-Independent Constitutive Recycling Pathway into a Highly Insulin-Responsive Rab10-Dependent Sequestration Pathway after Adipocyte Differentiation. The Journal of Biological Chemistry
Brewer PD, Habtemichael EN, Romenskaia I, et al. (2014) Insulin-regulated Glut4 translocation: membrane protein trafficking with six distinctive steps. The Journal of Biological Chemistry. 289: 17280-98
Brewer PD, Romenskaia I, Kanow MA, et al. (2011) Loss of AS160 Akt substrate causes Glut4 protein to accumulate in compartments that are primed for fusion in basal adipocytes. The Journal of Biological Chemistry. 286: 26287-97
Habtemichael EN, Brewer PD, Romenskaia I, et al. (2011) Kinetic evidence that Glut4 follows different endocytic pathways than the receptors for transferrin and alpha2-macroglobulin. The Journal of Biological Chemistry. 286: 10115-25
Ni S, Hong F, Brewer PD, et al. (2009) Kinetic and motor functions mediated by distinct regions of the regulatory light chain of smooth muscle myosin. Biochimica Et Biophysica Acta. 1794: 1599-605
Hong F, Haldeman BD, John OA, et al. (2009) Characterization of tightly associated smooth muscle myosin-myosin light-chain kinase-calmodulin complexes. Journal of Molecular Biology. 390: 879-92
Dietrich KA, Sindelar CV, Brewer PD, et al. (2008) The kinesin-1 motor protein is regulated by a direct interaction of its head and tail. Proceedings of the National Academy of Sciences of the United States of America. 105: 8938-43
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