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Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function

[Image: see text] Mitochondrial structure and organization is integral to maintaining mitochondrial homeostasis and an emerging biological target in aging, inflammation, neurodegeneration, and cancer. The study of mitochondrial structure and its functional implications remains challenging in part be...

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Autores principales: Mertens, R. Tyler, Jennings, William C., Ofori, Samuel, Kim, Jong Hyun, Parkin, Sean, Kwakye, Gunnar F., Awuah, Samuel G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8395693/
https://www.ncbi.nlm.nih.gov/pubmed/34467306
http://dx.doi.org/10.1021/jacsau.1c00051
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author Mertens, R. Tyler
Jennings, William C.
Ofori, Samuel
Kim, Jong Hyun
Parkin, Sean
Kwakye, Gunnar F.
Awuah, Samuel G.
author_facet Mertens, R. Tyler
Jennings, William C.
Ofori, Samuel
Kim, Jong Hyun
Parkin, Sean
Kwakye, Gunnar F.
Awuah, Samuel G.
author_sort Mertens, R. Tyler
collection PubMed
description [Image: see text] Mitochondrial structure and organization is integral to maintaining mitochondrial homeostasis and an emerging biological target in aging, inflammation, neurodegeneration, and cancer. The study of mitochondrial structure and its functional implications remains challenging in part because of the lack of available tools for direct engagement, particularly in a disease setting. Here, we report a gold-based approach to perturb mitochondrial structure in cancer cells. Specifically, the design and synthesis of a series of tricoordinate Au(I) complexes with systematic modifications to group 15 nonmetallic ligands establish structure–activity relationships (SAR) to identify physiologically relevant tools for mitochondrial perturbation. The optimized compound, AuTri-9 selectively disrupts breast cancer mitochondrial structure rapidly as observed by transmission electron microscopy with attendant effects on fusion and fission proteins. This phenomenon triggers severe depolarization of the mitochondrial membrane in cancer cells. The high in vivo tolerability of AuTri-9 in mice demonstrates its preclinical utility. This work provides a basis for rational design of gold-based agents to control mitochondrial structure and dynamics.
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spelling pubmed-83956932021-08-30 Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function Mertens, R. Tyler Jennings, William C. Ofori, Samuel Kim, Jong Hyun Parkin, Sean Kwakye, Gunnar F. Awuah, Samuel G. JACS Au [Image: see text] Mitochondrial structure and organization is integral to maintaining mitochondrial homeostasis and an emerging biological target in aging, inflammation, neurodegeneration, and cancer. The study of mitochondrial structure and its functional implications remains challenging in part because of the lack of available tools for direct engagement, particularly in a disease setting. Here, we report a gold-based approach to perturb mitochondrial structure in cancer cells. Specifically, the design and synthesis of a series of tricoordinate Au(I) complexes with systematic modifications to group 15 nonmetallic ligands establish structure–activity relationships (SAR) to identify physiologically relevant tools for mitochondrial perturbation. The optimized compound, AuTri-9 selectively disrupts breast cancer mitochondrial structure rapidly as observed by transmission electron microscopy with attendant effects on fusion and fission proteins. This phenomenon triggers severe depolarization of the mitochondrial membrane in cancer cells. The high in vivo tolerability of AuTri-9 in mice demonstrates its preclinical utility. This work provides a basis for rational design of gold-based agents to control mitochondrial structure and dynamics. American Chemical Society 2021-03-09 /pmc/articles/PMC8395693/ /pubmed/34467306 http://dx.doi.org/10.1021/jacsau.1c00051 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Mertens, R. Tyler
Jennings, William C.
Ofori, Samuel
Kim, Jong Hyun
Parkin, Sean
Kwakye, Gunnar F.
Awuah, Samuel G.
Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function
title Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function
title_full Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function
title_fullStr Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function
title_full_unstemmed Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function
title_short Synthetic Control of Mitochondrial Dynamics: Developing Three-Coordinate Au(I) Probes for Perturbation of Mitochondria Structure and Function
title_sort synthetic control of mitochondrial dynamics: developing three-coordinate au(i) probes for perturbation of mitochondria structure and function
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8395693/
https://www.ncbi.nlm.nih.gov/pubmed/34467306
http://dx.doi.org/10.1021/jacsau.1c00051
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