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PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats

Mitophagy plays a key role in cleaning damaged and depolarized mitochondria to maintain cellular homeostasis and viability. Although it was originally found in neurodegenerative diseases, mitophagy is reported to play an important role in acute kidney injury. PINK1 and Parkin are key molecules in mi...

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Autores principales: Zhou, Li, Zhang, Ling, Zhang, Yu, Yu, Xuan, Sun, Xiuping, Zhu, Tao, Li, Xianglei, Liang, Wei, Han, Yunlin, Qin, Chuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6773839/
https://www.ncbi.nlm.nih.gov/pubmed/31607953
http://dx.doi.org/10.3389/fphys.2019.01225
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author Zhou, Li
Zhang, Ling
Zhang, Yu
Yu, Xuan
Sun, Xiuping
Zhu, Tao
Li, Xianglei
Liang, Wei
Han, Yunlin
Qin, Chuan
author_facet Zhou, Li
Zhang, Ling
Zhang, Yu
Yu, Xuan
Sun, Xiuping
Zhu, Tao
Li, Xianglei
Liang, Wei
Han, Yunlin
Qin, Chuan
author_sort Zhou, Li
collection PubMed
description Mitophagy plays a key role in cleaning damaged and depolarized mitochondria to maintain cellular homeostasis and viability. Although it was originally found in neurodegenerative diseases, mitophagy is reported to play an important role in acute kidney injury. PINK1 and Parkin are key molecules in mitophagy pathway. Here, we used PINK1 knockout rats to examine the role of PINK1/Parkin-mediated mitophagy in cisplatin nephrotoxicity. After cisplatin treatment, PINK1 knockout rats showed lower plasma creatinine and less tubular damage when compared with wild-type rats. Meanwhile, mitophagy indicated by autophagosome formation and LC3B-II accumulation was also attenuated in PINK1 knockout rats. Renal expression of PINK1 and Parkin were down-regulated while BNIP3L was up-regulated by cisplatin treatment, indicating a major role of BNIP3/BNIP3L pathway in cisplatin-induced mitophagy. Transmission electron microscopy showed that PINK1 deficiency inhibited cisplatin-induced mitochondrial fragmentation indicating an involvement of mitochondrial fusion and fission. Renal expression of mitochondrial dynamics related proteins including Fis1, Drp1, Mfn1, Mfn2, and Opa1 were checked by real-time PCR and western blots. The results showed PINK1 deficiency distinctly prevented cisplatin-induced up-regulation of DRP1. Finally, PINK1 deficiency alleviated cisplatin-induced tubular apoptosis indicated by TUNEL assay as well as the expression of caspase3 and cleaved caspase3. Together, these results suggested PINK1 deficiency ameliorated cisplatin-induced acute kidney injury in rats, possibly via inhibiting DRP1-mediated mitochondrial fission and excessive mitophagy.
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spelling pubmed-67738392019-10-13 PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats Zhou, Li Zhang, Ling Zhang, Yu Yu, Xuan Sun, Xiuping Zhu, Tao Li, Xianglei Liang, Wei Han, Yunlin Qin, Chuan Front Physiol Physiology Mitophagy plays a key role in cleaning damaged and depolarized mitochondria to maintain cellular homeostasis and viability. Although it was originally found in neurodegenerative diseases, mitophagy is reported to play an important role in acute kidney injury. PINK1 and Parkin are key molecules in mitophagy pathway. Here, we used PINK1 knockout rats to examine the role of PINK1/Parkin-mediated mitophagy in cisplatin nephrotoxicity. After cisplatin treatment, PINK1 knockout rats showed lower plasma creatinine and less tubular damage when compared with wild-type rats. Meanwhile, mitophagy indicated by autophagosome formation and LC3B-II accumulation was also attenuated in PINK1 knockout rats. Renal expression of PINK1 and Parkin were down-regulated while BNIP3L was up-regulated by cisplatin treatment, indicating a major role of BNIP3/BNIP3L pathway in cisplatin-induced mitophagy. Transmission electron microscopy showed that PINK1 deficiency inhibited cisplatin-induced mitochondrial fragmentation indicating an involvement of mitochondrial fusion and fission. Renal expression of mitochondrial dynamics related proteins including Fis1, Drp1, Mfn1, Mfn2, and Opa1 were checked by real-time PCR and western blots. The results showed PINK1 deficiency distinctly prevented cisplatin-induced up-regulation of DRP1. Finally, PINK1 deficiency alleviated cisplatin-induced tubular apoptosis indicated by TUNEL assay as well as the expression of caspase3 and cleaved caspase3. Together, these results suggested PINK1 deficiency ameliorated cisplatin-induced acute kidney injury in rats, possibly via inhibiting DRP1-mediated mitochondrial fission and excessive mitophagy. Frontiers Media S.A. 2019-09-25 /pmc/articles/PMC6773839/ /pubmed/31607953 http://dx.doi.org/10.3389/fphys.2019.01225 Text en Copyright © 2019 Zhou, Zhang, Zhang, Yu, Sun, Zhu, Li, Liang, Han and Qin. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Zhou, Li
Zhang, Ling
Zhang, Yu
Yu, Xuan
Sun, Xiuping
Zhu, Tao
Li, Xianglei
Liang, Wei
Han, Yunlin
Qin, Chuan
PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats
title PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats
title_full PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats
title_fullStr PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats
title_full_unstemmed PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats
title_short PINK1 Deficiency Ameliorates Cisplatin-Induced Acute Kidney Injury in Rats
title_sort pink1 deficiency ameliorates cisplatin-induced acute kidney injury in rats
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6773839/
https://www.ncbi.nlm.nih.gov/pubmed/31607953
http://dx.doi.org/10.3389/fphys.2019.01225
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