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Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1

RD‐N, an aminomethylated derivative of riccardin D, is a lysosomotropic agent that can trigger lysosomal membrane permeabilization followed by cathepsin B (CTSB)‐dependent apoptosis in prostate cancer (PCa) cells, but the underlying mechanisms remain unknown. Here we show that RD‐N treatment drives...

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Autores principales: Wang, Yanyan, Niu, Huanmin, Hu, Zhongyi, Zhu, Mengyuan, Wang, Lining, Han, Lili, Qian, Lilin, Tian, Keli, Yuan, Huiqing, Lou, Hongxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6378192/
https://www.ncbi.nlm.nih.gov/pubmed/30565390
http://dx.doi.org/10.1111/jcmm.14077
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author Wang, Yanyan
Niu, Huanmin
Hu, Zhongyi
Zhu, Mengyuan
Wang, Lining
Han, Lili
Qian, Lilin
Tian, Keli
Yuan, Huiqing
Lou, Hongxiang
author_facet Wang, Yanyan
Niu, Huanmin
Hu, Zhongyi
Zhu, Mengyuan
Wang, Lining
Han, Lili
Qian, Lilin
Tian, Keli
Yuan, Huiqing
Lou, Hongxiang
author_sort Wang, Yanyan
collection PubMed
description RD‐N, an aminomethylated derivative of riccardin D, is a lysosomotropic agent that can trigger lysosomal membrane permeabilization followed by cathepsin B (CTSB)‐dependent apoptosis in prostate cancer (PCa) cells, but the underlying mechanisms remain unknown. Here we show that RD‐N treatment drives CTSB translocation from the lysosomes to the nucleus where it promotes DNA damage by suppression of the breast cancer 1 protein (BRCA1). Inhibition of CTSB activity with its specific inhibitors, or by CTSB‐targeting siRNA or CTSB with enzyme‐negative domain attenuated activation of BRCA1 and DNA damage induced by RD‐N. Conversely, CTSB overexpression resulted in inhibition of BRCA1 and sensitized PCa cells to RD‐N‐induced cell death. Furthermore, RD‐N‐induced cell death was exacerbated in BRCA1‐deficient cancer cells. We also demonstrated that CTSB/BRCA1‐dependent DNA damage was critical for RD‐N, but not for etoposide, reinforcing the importance of CTSB/BRCA1 in RD‐N‐mediated cell death. In addition, RD‐N synergistically increased cell sensitivity to cisplatin, and this effect was more evidenced in BRCA1‐deficient cancer cells. This study reveals a novel molecular mechanism that RD‐N promotes CTSB‐dependent DNA damage by the suppression of BRCA1 in PCa cells, leading to the identification of a potential compound that target lysosomes for cancer treatment.
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spelling pubmed-63781922019-03-01 Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1 Wang, Yanyan Niu, Huanmin Hu, Zhongyi Zhu, Mengyuan Wang, Lining Han, Lili Qian, Lilin Tian, Keli Yuan, Huiqing Lou, Hongxiang J Cell Mol Med Original Articles RD‐N, an aminomethylated derivative of riccardin D, is a lysosomotropic agent that can trigger lysosomal membrane permeabilization followed by cathepsin B (CTSB)‐dependent apoptosis in prostate cancer (PCa) cells, but the underlying mechanisms remain unknown. Here we show that RD‐N treatment drives CTSB translocation from the lysosomes to the nucleus where it promotes DNA damage by suppression of the breast cancer 1 protein (BRCA1). Inhibition of CTSB activity with its specific inhibitors, or by CTSB‐targeting siRNA or CTSB with enzyme‐negative domain attenuated activation of BRCA1 and DNA damage induced by RD‐N. Conversely, CTSB overexpression resulted in inhibition of BRCA1 and sensitized PCa cells to RD‐N‐induced cell death. Furthermore, RD‐N‐induced cell death was exacerbated in BRCA1‐deficient cancer cells. We also demonstrated that CTSB/BRCA1‐dependent DNA damage was critical for RD‐N, but not for etoposide, reinforcing the importance of CTSB/BRCA1 in RD‐N‐mediated cell death. In addition, RD‐N synergistically increased cell sensitivity to cisplatin, and this effect was more evidenced in BRCA1‐deficient cancer cells. This study reveals a novel molecular mechanism that RD‐N promotes CTSB‐dependent DNA damage by the suppression of BRCA1 in PCa cells, leading to the identification of a potential compound that target lysosomes for cancer treatment. John Wiley and Sons Inc. 2018-12-18 2019-03 /pmc/articles/PMC6378192/ /pubmed/30565390 http://dx.doi.org/10.1111/jcmm.14077 Text en © 2018 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the 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
Wang, Yanyan
Niu, Huanmin
Hu, Zhongyi
Zhu, Mengyuan
Wang, Lining
Han, Lili
Qian, Lilin
Tian, Keli
Yuan, Huiqing
Lou, Hongxiang
Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1
title Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1
title_full Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1
title_fullStr Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1
title_full_unstemmed Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1
title_short Targeting the lysosome by an aminomethylated Riccardin D triggers DNA damage through cathepsin B‐mediated degradation of BRCA1
title_sort targeting the lysosome by an aminomethylated riccardin d triggers dna damage through cathepsin b‐mediated degradation of brca1
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6378192/
https://www.ncbi.nlm.nih.gov/pubmed/30565390
http://dx.doi.org/10.1111/jcmm.14077
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