microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism
Autosomal dominant polycystic kidney disease (ADPKD) is a life-threatening genetic disease that leads to renal failure. Here Hajarniset al. show that miR-17 modulates cyst progression in ADPKD through metabolic reprogramming of mitochondria and its inhibition slows cyst development and improves rena...
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Nature Portfolio
2017
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oai:doaj.org-article:5b2531a29caa4303ae532695340657ca2021-12-02T17:06:25ZmicroRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism10.1038/ncomms143952041-1723https://doaj.org/article/5b2531a29caa4303ae532695340657ca2017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14395https://doaj.org/toc/2041-1723Autosomal dominant polycystic kidney disease (ADPKD) is a life-threatening genetic disease that leads to renal failure. Here Hajarniset al. show that miR-17 modulates cyst progression in ADPKD through metabolic reprogramming of mitochondria and its inhibition slows cyst development and improves renal functions.Sachin HajarnisRonak LakhiaMatanel YheskelDarren WilliamsMehran SorourianXueqing LiuKaram AboudehenShanrong ZhangKara KersjesRyan GalassoJian LiVivek KaimalSteven LocktonScott DavisAndrea FlatenJoshua A. JohnsonWilliam L. HollandChristine M. KusminskiPhilipp E. SchererPeter C. HarrisMarie TrudelDarren P. WallacePeter IgarashiEdmund C. LeeJohn R. AndrosavichVishal PatelNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-15 (2017) |
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Science Q Sachin Hajarnis Ronak Lakhia Matanel Yheskel Darren Williams Mehran Sorourian Xueqing Liu Karam Aboudehen Shanrong Zhang Kara Kersjes Ryan Galasso Jian Li Vivek Kaimal Steven Lockton Scott Davis Andrea Flaten Joshua A. Johnson William L. Holland Christine M. Kusminski Philipp E. Scherer Peter C. Harris Marie Trudel Darren P. Wallace Peter Igarashi Edmund C. Lee John R. Androsavich Vishal Patel microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
description |
Autosomal dominant polycystic kidney disease (ADPKD) is a life-threatening genetic disease that leads to renal failure. Here Hajarniset al. show that miR-17 modulates cyst progression in ADPKD through metabolic reprogramming of mitochondria and its inhibition slows cyst development and improves renal functions. |
format |
article |
author |
Sachin Hajarnis Ronak Lakhia Matanel Yheskel Darren Williams Mehran Sorourian Xueqing Liu Karam Aboudehen Shanrong Zhang Kara Kersjes Ryan Galasso Jian Li Vivek Kaimal Steven Lockton Scott Davis Andrea Flaten Joshua A. Johnson William L. Holland Christine M. Kusminski Philipp E. Scherer Peter C. Harris Marie Trudel Darren P. Wallace Peter Igarashi Edmund C. Lee John R. Androsavich Vishal Patel |
author_facet |
Sachin Hajarnis Ronak Lakhia Matanel Yheskel Darren Williams Mehran Sorourian Xueqing Liu Karam Aboudehen Shanrong Zhang Kara Kersjes Ryan Galasso Jian Li Vivek Kaimal Steven Lockton Scott Davis Andrea Flaten Joshua A. Johnson William L. Holland Christine M. Kusminski Philipp E. Scherer Peter C. Harris Marie Trudel Darren P. Wallace Peter Igarashi Edmund C. Lee John R. Androsavich Vishal Patel |
author_sort |
Sachin Hajarnis |
title |
microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
title_short |
microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
title_full |
microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
title_fullStr |
microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
title_full_unstemmed |
microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
title_sort |
microrna-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/5b2531a29caa4303ae532695340657ca |
work_keys_str_mv |
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