Title Information
Title
Towards Understanding Functional Nuclear Alterations with Cellular Senescence
Type of Resource (primo)
dissertations
Name: Personal
Name Part
Dalgarno, Audrey
Role
Role Term: Text
creator
Name: Personal
Name Part
Neretti, Nicola
Role
Role Term: Text
Advisor
Name: Personal
Name Part
Larschan, Erica
Role
Role Term: Text
Reader
Name: Personal
Name Part
Dawson, Michelle
Role
Role Term: Text
Reader
Name: Personal
Name Part
Sedivy, John
Role
Role Term: Text
Reader
Name: Personal
Name Part
Ma, Jian
Role
Role Term: Text
Reader
Name: Corporate
Name Part
Brown University. Department of Molecular Biology, Cell Biology and Biochemistry
Role
Role Term: Text
sponsor
Origin Information
Copyright Date
2024
Physical Description
Extent
xviii, 177 p.
digitalOrigin
born digital
Note: thesis
Thesis (Ph. D.)--Brown University, 2024
Genre (aat)
theses
Abstract
Aging is the one thing that no person has survived. This complex phenotype is driven by many changes, including an increased prevalence of cellular senescence. Senescent cells are in a characteristic state of proliferative arrest and drive nefarious aspects of aging such as inflammation and tissue damage. Furthermore, senescence is supported by many epigenetic alterations, including those at the large-scale level of genomic architecture. This thesis presents the highest resolution analysis of chromosome organization in cellular senescence to date. Many distinctive changes occur with senescence, such as an increase in chromatin looping associated with demethylation and derepression of retroelements at architecturally-supported “hotspots.” This thesis also presents improved tools to efficiently work with and compare genomic shape, namely the Chromosome Shape Alphabet method, which can identify prototypical shapes in the 3D genome, and TADBay, a new TAD calling method which is benchmarked as compared to other state-of-the-art callers. Lastly, this thesis presents a preliminary analysis of the single-cell epigenetic landscape of reprogramming, a new rejuvenation method, with an emphasis on the role of senescent cells. Overall, this research gives significant insight into how epigenetic changes, mainly at the level of genomic architecture, contribute to cellular senescence, bringing us closer towards living longer, healthier lives.
Subject
Topic
epigenetics
Subject (fast) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/00871990")
Topic
Computational biology
Subject (fast) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/00800293")
Topic
Aging
Subject
Topic
genomic architecture
Language
Language Term (ISO639-2B)
English
Record Information
Record Content Source (marcorg)
RPB
Record Creation Date (encoding="iso8601")
20240423