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Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors

Clearing senescent cells extends healthspan in mice. Using a hypothesis‐driven bioinformatics‐based approach, we recently identified pro‐survival pathways in human senescent cells that contribute to their resistance to apoptosis. This led to identification of dasatinib (D) and quercetin (Q) as senol...

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Autores principales: Zhu, Yi, Tchkonia, Tamara, Fuhrmann‐Stroissnigg, Heike, Dai, Haiming M., Ling, Yuanyuan Y., Stout, Michael B., Pirtskhalava, Tamar, Giorgadze, Nino, Johnson, Kurt O., Giles, Cory B., Wren, Jonathan D., Niedernhofer, Laura J., Robbins, Paul D., Kirkland, James L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854923/
https://www.ncbi.nlm.nih.gov/pubmed/26711051
http://dx.doi.org/10.1111/acel.12445
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author Zhu, Yi
Tchkonia, Tamara
Fuhrmann‐Stroissnigg, Heike
Dai, Haiming M.
Ling, Yuanyuan Y.
Stout, Michael B.
Pirtskhalava, Tamar
Giorgadze, Nino
Johnson, Kurt O.
Giles, Cory B.
Wren, Jonathan D.
Niedernhofer, Laura J.
Robbins, Paul D.
Kirkland, James L.
author_facet Zhu, Yi
Tchkonia, Tamara
Fuhrmann‐Stroissnigg, Heike
Dai, Haiming M.
Ling, Yuanyuan Y.
Stout, Michael B.
Pirtskhalava, Tamar
Giorgadze, Nino
Johnson, Kurt O.
Giles, Cory B.
Wren, Jonathan D.
Niedernhofer, Laura J.
Robbins, Paul D.
Kirkland, James L.
author_sort Zhu, Yi
collection PubMed
description Clearing senescent cells extends healthspan in mice. Using a hypothesis‐driven bioinformatics‐based approach, we recently identified pro‐survival pathways in human senescent cells that contribute to their resistance to apoptosis. This led to identification of dasatinib (D) and quercetin (Q) as senolytics, agents that target some of these pathways and induce apoptosis preferentially in senescent cells. Among other pro‐survival regulators identified was Bcl‐xl. Here, we tested whether the Bcl‐2 family inhibitors, navitoclax (N) and TW‐37 (T), are senolytic. Like D and Q, N is senolytic in some, but not all types of senescent cells: N reduced viability of senescent human umbilical vein epithelial cells (HUVECs), IMR90 human lung fibroblasts, and murine embryonic fibroblasts (MEFs), but not human primary preadipocytes, consistent with our previous finding that Bcl‐xl siRNA is senolytic in HUVECs, but not preadipocytes. In contrast, T had little senolytic activity. N targets Bcl‐2, Bcl‐xl, and Bcl‐w, while T targets Bcl‐2, Bcl‐xl, and Mcl‐1. The combination of Bcl‐2, Bcl‐xl, and Bcl‐w siRNAs was senolytic in HUVECs and IMR90 cells, while combination of Bcl‐2, Bcl‐xl, and Mcl‐1 siRNAs was not. Susceptibility to N correlated with patterns of Bcl‐2 family member proteins in different types of human senescent cells, as has been found in predicting response of cancers to N. Thus, N is senolytic and acts in a potentially predictable cell type‐restricted manner. The hypothesis‐driven, bioinformatics‐based approach we used to discover that dasatinib (D) and quercetin (Q) are senolytic can be extended to increase the repertoire of senolytic drugs, including additional cell type‐specific senolytic agents.
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spelling pubmed-48549232016-06-16 Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors Zhu, Yi Tchkonia, Tamara Fuhrmann‐Stroissnigg, Heike Dai, Haiming M. Ling, Yuanyuan Y. Stout, Michael B. Pirtskhalava, Tamar Giorgadze, Nino Johnson, Kurt O. Giles, Cory B. Wren, Jonathan D. Niedernhofer, Laura J. Robbins, Paul D. Kirkland, James L. Aging Cell Original Articles Clearing senescent cells extends healthspan in mice. Using a hypothesis‐driven bioinformatics‐based approach, we recently identified pro‐survival pathways in human senescent cells that contribute to their resistance to apoptosis. This led to identification of dasatinib (D) and quercetin (Q) as senolytics, agents that target some of these pathways and induce apoptosis preferentially in senescent cells. Among other pro‐survival regulators identified was Bcl‐xl. Here, we tested whether the Bcl‐2 family inhibitors, navitoclax (N) and TW‐37 (T), are senolytic. Like D and Q, N is senolytic in some, but not all types of senescent cells: N reduced viability of senescent human umbilical vein epithelial cells (HUVECs), IMR90 human lung fibroblasts, and murine embryonic fibroblasts (MEFs), but not human primary preadipocytes, consistent with our previous finding that Bcl‐xl siRNA is senolytic in HUVECs, but not preadipocytes. In contrast, T had little senolytic activity. N targets Bcl‐2, Bcl‐xl, and Bcl‐w, while T targets Bcl‐2, Bcl‐xl, and Mcl‐1. The combination of Bcl‐2, Bcl‐xl, and Bcl‐w siRNAs was senolytic in HUVECs and IMR90 cells, while combination of Bcl‐2, Bcl‐xl, and Mcl‐1 siRNAs was not. Susceptibility to N correlated with patterns of Bcl‐2 family member proteins in different types of human senescent cells, as has been found in predicting response of cancers to N. Thus, N is senolytic and acts in a potentially predictable cell type‐restricted manner. The hypothesis‐driven, bioinformatics‐based approach we used to discover that dasatinib (D) and quercetin (Q) are senolytic can be extended to increase the repertoire of senolytic drugs, including additional cell type‐specific senolytic agents. John Wiley and Sons Inc. 2016-03-18 2016-06 /pmc/articles/PMC4854923/ /pubmed/26711051 http://dx.doi.org/10.1111/acel.12445 Text en © 2015 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Zhu, Yi
Tchkonia, Tamara
Fuhrmann‐Stroissnigg, Heike
Dai, Haiming M.
Ling, Yuanyuan Y.
Stout, Michael B.
Pirtskhalava, Tamar
Giorgadze, Nino
Johnson, Kurt O.
Giles, Cory B.
Wren, Jonathan D.
Niedernhofer, Laura J.
Robbins, Paul D.
Kirkland, James L.
Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors
title Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors
title_full Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors
title_fullStr Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors
title_full_unstemmed Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors
title_short Identification of a novel senolytic agent, navitoclax, targeting the Bcl‐2 family of anti‐apoptotic factors
title_sort identification of a novel senolytic agent, navitoclax, targeting the bcl‐2 family of anti‐apoptotic factors
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854923/
https://www.ncbi.nlm.nih.gov/pubmed/26711051
http://dx.doi.org/10.1111/acel.12445
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