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Dominican University of California

Targeting Mitochondrial Proline Dehydrogenase (PRODH) with a Suicide Inhibitor as a Novel Anticancer Strategy

Abstract

dc:description.abstract

<p>Proline dehydrogenase (PRODH) is a p53-inducible inner mitochondrial membrane protein linked to electron transport and capable of generating mitochondrial glutamate and intracellular ATP, especially under cellular stress conditions. Among a panel of 51 human breast cancer cell lines, PRODH and glutaminase (GLS1) expression levels were found to be inversely correlated (1) implicating two independent and alternative mitochondrial pathways supplying anaplerotic glutamate for cancer cell energy production and macromolecular synthesis. Proposing PRODH to be a promising cancer therapeutic target, we compared the <em>in vitro</em> cellular effects of PRODH knockdown by siRNA as well as competitive (L-tetrahydrofuroic acid, THFA; or 5-oxo-2-tetrahydrofurancarboxylic acid, 5-oxo) and irreversible/suicide (PPG) inhibitors of PRODH using cultured human breast cancer cells. PRODH knockdown or enzymatic inhibition each inhibited cell growth and induced variable degrees of apoptosis against malignant breast epithelial cell lines (ZR-75-1, DU4475, MCF-7) without affecting immortalized and non-malignant breast epithelial cells (MCF-10A). Loss of PRODH function produced additive <em>in vitro</em> anticancer effects when combined with either a p53 upregulator (MI-63) or a glutaminase inhibitor (CB-839) (2). Unlike the competitive inhibitors, PPG not only demonstrated irreversible inhibition of PRODH enzymatic activity on isolated breast cancer cell mitochondria (ZR-75-1) but it also induced loss of mitochondrial PRODH expression prior to its induction of cancer cell apoptosis. Computer modeling of PRODH’s enzymatic pocket occupied by either 5-oxo or PPG revealed that PPG likely induces molecular distortion, suggesting its unique ability to activate apoptosis by first triggering mitochondrial stress; however, it remains unclear whether the cancer cell’s ultimate response to this initial mitochondrial stress is mediated by mitophagy or by the mitochondrial unfolded protein response (UPR<sup>mt</sup>). The two objectives of this current project address both the mechanistic questions about mitochondrial stress induced by the suicide PRODH inhibitor, PPG, as well as a more translational question about the <em>in vivo</em> feasibility of systemically administering PPG as a potential therapeutic. To address the first objective, we employed confocal intracellular imaging to investigate the mitochondrial stress induced by PPG. To address the second objective, PPG was administered <em>in vivo</em> to flies and mice (implanted with xenografted human breast tumors) to observe both whole organism and tissue-specific effects of this mitochondrial stress inducing suicide inhibitor of PRODH. These studies form the basis for more extended <em>in vivo</em> preclinical testing of PRODH suicide inhibitors as a potential new breast cancer treatment strategy.</p>

Degree

thesis:*
Name thesis:degree_name
Master of Science
Level thesis:degree_level
Master's Thesis
Discipline thesis:degree_discipline
Biological Sciences
Year dc:date.available
2018

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Becker, Beatrice
Contributors dc:contributor
  • Christopher Benz, MD
  • Ekaterina Kalashnikova, PhD

Subjects

dc:subject × 2

Identifiers

dc:identifier.*
Repository record dc:identifier
https://scholar.dominican.edu/masters-theses/337
OAI identifier oai:identifier
oai:scholar.dominican.edu:masters-theses-1357

Chain of custody

source
Harvested from
Dominican University of California
Base URL
scholar.dominican.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Becker, Beatrice. Targeting Mitochondrial Proline Dehydrogenase (PRODH) with a Suicide Inhibitor as a Novel Anticancer Strategy. Master's Thesis thesis, 2018. https://scholar.dominican.edu/masters-theses/337