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A comprehensive assessment of peroxisome biology: ER-dependent peroxisome proliferation control, evolution of organelle inheritance in yeast and a Drosophila model system of Zellweger syndrome
DownloadFall 2013
The modern eukaryotic cell is a meshwork of encapsulating membranes that compartmentalize many distinct biochemical processes. It is complex. This complexity facilitates the many unique and diverse processes that aid the eukaryote in its growth, division and adaptation to its environment. A...
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Spring 2016
Schlacht, Alexander Douglas William
One of the features that distinguishes eukaryotes from prokaryotes is the membrane trafficking system. This system underpins much of the functionality of the eukaryotic cell, and is necessary for feeding, motility and communication. Analyses aimed at addressing the evolution of this system have...
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Mammalian and Saccharomyces cerevisiae ER-mitochondria contact site regulation by small Rab GTPases and ER folding assistants
DownloadFall 2021
Membrane-bound organelles allow eukaryotes to compartmentalize components and processes in a highly organized manner. Organelles can communicate with one another through membrane contact sites (MCS): membrane appositions 10-50nm apart. MCS were not widely accepted as bona fide sites of organelle...
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Fall 2013
Ortiz Sandoval, Carolina Guadalupe
The ER mitochondria-associated membrane (MAM) is a hub for many calcium-mediated processes required for cell survival, including apoptosis, autophagy, and ATP production. In this thesis, we identified and characterized the interaction between MAM-enriched Rab32 and its effector Drp1, a master...
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Understanding the evolution of the membrane trafficking system in diverse eukaryotes through comparative genomics and transcriptomics
DownloadSpring 2018
Single-celled organisms represent the majority of eukaryotic diversity. Recent advances in sequencing technologies have been critical for understanding the evolutionary biology and cell biology of microbial eukaryotes. Comparative genomic analyses have shown that many genes that underlie...