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Washington University in St. Louis

An Examination of Oxysterol Effects on Membrane Bilayers Using Molecular Dynamics Simulations

Abstract

dc:description.abstract

My thesis work focuses on understanding the role of biological membranes in cellular processes. I am particularly interested in how small molecules perturb membrane structure and regulate membrane function. Membranes are primarily responsible for segregating different compartments of biological cells from each other. However, they have other roles as well, including influencing signal transduction in the cell, both through associated membrane proteins and directly through alterations in membrane organization. In order to understand how small molecules change membranes, I use molecular dynamics simulations of small simplified membranes to examine, at an atomic-level detail, how the addition of small molecules to the membrane can perturb its structure and physical properties and alter membrane function. I focus on a group of small molecules called oxysterols, oxygenated derivatives of cholesterol. They are present in small concentrations in mammalian cells and have been shown to be involved in multiple regulatory pathways involving control of cellular cholesterol levels. The mechanisms through which they transduce signals is not yet well understood. While several oxysterol-binding proteins have been identified, some pathways in which these molecules act appear to be protein-independent. Using molecular dynamics simulations of oxysterols in membranes, I have shown that 1) oxysterols arrange themselves within membranes very differently than cholesterol, 2) the presence of oxysterols causes changes in cholesterol organization within the membrane, and 3) the effects of oxysterols on membranes are highly dependent on the phospholipid composition of the membrane. These simulations have provided atomic detail of how oxysterols can change membrane properties, and provided potential mechanisms of oxysterol signaling that can be further investigated using experimental approaches.

Degree

thesis:*
Name thesis:degree_name
Doctor of Philosophy (PhD)
Level thesis:degree_level
Dissertation
Discipline thesis:degree_discipline
Biology and Biomedical Sciences: Molecular Cell Biology
Year dc:date.available
2010

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Olsen, Brett
Contributors dc:contributor
  • Nathan Baker

Subjects

dc:subject × 5

Rights

Language dc:language
English (en)

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:openscholarship.wustl.edu:etd-1419

Chain of custody

source
Harvested from
Washington University in St. Louis
Base URL
openscholarship.wustl.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Olsen, Brett. An Examination of Oxysterol Effects on Membrane Bilayers Using Molecular Dynamics Simulations. Dissertation thesis, 2010. https://openscholarship.wustl.edu/etd/420