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1.
Investigations of the functional interface between Env7 and TORC1 in Saccharomyces cerevisiae
by Shaoulian, Jonathan, M.S.  California State University, Long Beach. 2016: 82 pages; 10161773.
2.
A genome-wide screen to identify genes involved at the late endosome and vacuole interface in Baker's yeast
by Menjiver, Rosa E., M.S.  California State University, Long Beach. 2012: 63 pages; 1517534.
5.
Studies on state of vacuolar trafficking and drug sensitivities of hhy mutants of Saccharomyces cerevisiae
by Bravo, Priscilla, M.S.  California State University, Long Beach. 2016: 72 pages; 10161776.
6.
The distinct VPS35 mutant, env1, exhibits unique protein mislocalization and processing phenotype
by Chima-Okereke, Onyinyechi, M.S.  California State University, Long Beach. 2010: 76 pages; 1490372.
8.
Env7p localizes to the vacuole membrane and plays a role in vacuolar protein processing
by Serranilla, Maribeth, M.S.  California State University, Long Beach. 2012: 77 pages; 1521640.
9.
A Study of Vacuolar Kinase Env7 Trafficking in Saccharomyces cerevisiae
by Frisardi, Leah, M.S.  California State University, Long Beach. 2019: 65 pages; 13859804.
11.
The cloning and characterization of the novel genes ENV10 and ENV11 in S. cerevisiae
by Oliveira, Lisa Ann K., M.S.  California State University, Long Beach. 2013: 73 pages; 1523032.
12.
The ESCRT machinery, required for endosomal trafficking, is a pH-signaling platform
by Boysen, Jacob, Ph.D.  Columbia University. 2008: 195 pages; 3348428.
13.
Studies on Saccharomyces cerevisiae Vacuolar Membrane Kinase Env7
by Valencia, Sara Patrice, M.S.  California State University, Long Beach. 2018: 95 pages; 10827602.
15.
Yeast Env9 is a conserved oxidoreductase involved in lipid droplet biogenesis
by Siddiqah, Ikha M., M.S.  California State University, Long Beach. 2015: 88 pages; 1593799.
17.
Novel Functions of the Flippase Drs2 and the Coat Protein COPI in Protein Trafficking
by Hankins, Hannah Marcille, Ph.D.  Vanderbilt University. 2016: 139 pages; 13834897.
18.
19.
Hcmv Induced Alterations to Endocytic Sorting
by Zeltzer, Sebastian L., Ph.D.  The University of Arizona. 2018: 142 pages; 10811165.
20.
PI3K-C2α: Insights into Autophagy and Endocytosis
by Merrill, Nathan Michael, Ph.D.  Van Andel Research Institute. 2017: 187 pages; 10620555.
21.
Membrane trafficking and receptor kinase signaling during plant development
by Burr, Christian Anne, Ph.D.  The University of North Carolina at Chapel Hill. 2011: 140 pages; 3477451.
22.
Structural and functional analysis of the autophagy protein Beclin-1
by Oberstein, Adam, Ph.D.  Princeton University. 2010: 135 pages; 3428555.
24.
Defining the human alveolar macrophage response to the Q fever agent, Coxiella burnetii
by Graham, Joseph G., Ph.D.  University of Arkansas for Medical Sciences. 2015: 245 pages; 3703996.
25.
The effect of shared dynamic understanding on willingness to contribute information: Design and analysis of a mega-collaborative interface
by Newlon, Christine Mae, Ph.D.  Indiana University - Purdue University Indianapolis. 2016: 358 pages; 10159859.
26.
Coxiella burnetii subversion of eukaryotic cAMP-dependent protein kinase activity during infection of macrophages
by MacDonald, Laura Jean, Ph.D.  University of Arkansas for Medical Sciences. 2013: 171 pages; 3563494.
27.
Examining the Role of Autophagy and P62 During Coxiella burnetii Infection of Macrophages
by Winchell, Caylin G., Ph.D.  University of Arkansas for Medical Sciences. 2016: 163 pages; 10250929.
28.
Harnessing protein transport principles for engineering applications: A computational study
by Freeman, Eric Christopher, Ph.D.  University of Pittsburgh. 2012: 199 pages; 3529609.
29.
Regulation of a Differentiation MAPK Pathway by a Novel Integrated Signaling Network and Multiple Sensors
by Caccamise, Lauren M., Ph.D.  State University of New York at Buffalo. 2015: 140 pages; 3725898.
30.
The role of cortactin in endolysosomal compartment regulation
by Hong, Nan Hyung, Ph.D.  Vanderbilt University. 2015: 129 pages; 10753447.
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