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Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia

Inherited kidney diseases are the fifth most common cause of end-stage renal disease (ESRD). Mitochondrial dysfunction plays a vital role in the progression of inherited kidney diseases, while mitochondrial-transfer RNA (mt-tRNA) variants and their pathogenic contributions to kidney disease remain l...

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Autores principales: Xu, Chengxian, Tong, Lingxiao, Rao, Jia, Ye, Qing, Chen, Yuxia, Zhang, Yingying, Xu, Jie, Mao, Xiaoting, Meng, Feilong, Shen, Huijun, Lu, Zhihong, Cang, Xiaohui, Fu, Haidong, Wang, Shugang, Gu, Weiyue, Lai, En-Yin, Guan, Min-Xin, Jiang, Pingping, Mao, Jianhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9220945/
https://www.ncbi.nlm.nih.gov/pubmed/35472031
http://dx.doi.org/10.1172/jci.insight.157418
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author Xu, Chengxian
Tong, Lingxiao
Rao, Jia
Ye, Qing
Chen, Yuxia
Zhang, Yingying
Xu, Jie
Mao, Xiaoting
Meng, Feilong
Shen, Huijun
Lu, Zhihong
Cang, Xiaohui
Fu, Haidong
Wang, Shugang
Gu, Weiyue
Lai, En-Yin
Guan, Min-Xin
Jiang, Pingping
Mao, Jianhua
author_facet Xu, Chengxian
Tong, Lingxiao
Rao, Jia
Ye, Qing
Chen, Yuxia
Zhang, Yingying
Xu, Jie
Mao, Xiaoting
Meng, Feilong
Shen, Huijun
Lu, Zhihong
Cang, Xiaohui
Fu, Haidong
Wang, Shugang
Gu, Weiyue
Lai, En-Yin
Guan, Min-Xin
Jiang, Pingping
Mao, Jianhua
author_sort Xu, Chengxian
collection PubMed
description Inherited kidney diseases are the fifth most common cause of end-stage renal disease (ESRD). Mitochondrial dysfunction plays a vital role in the progression of inherited kidney diseases, while mitochondrial-transfer RNA (mt-tRNA) variants and their pathogenic contributions to kidney disease remain largely unclear. In this study, we identified the pathogenic mt-tRNA(Phe) 616T>C mutation in 3 families and documented that m.616T>C showed a high pathogenic threshold, with both heteroplasmy and homoplasmy leading to isolated chronic kidney disease and hyperuricemia without hematuria, proteinuria, or renal cyst formation. Moreover, 1 proband with homoplamic m.616T>C presented ESRD as a child. No symptoms of nervous system evolvement were observed in these families. Lymphoblast cells bearing m.616T>C exhibited swollen mitochondria, underwent active mitophagy, and showed respiratory deficiency, leading to reduced mitochondrial ATP production, diminished membrane potential, and overproduction of mitochondrial ROS. Pathogenic m.616T>C abolished a highly conserved base pair (A31-U39) in the anticodon stem-loop which altered the structure of mt-tRNA(Phe), as confirmed by a decreased melting temperature and slower electrophoretic mobility of the mutant tRNA. Furthermore, the unstable structure of mt-tRNA(Phe) contributed to a shortage of steady-state mt-tRNA(Phe) and enhanced aminoacylation efficiency, which resulted in impaired mitochondrial RNA translation and a significant decrease in mtDNA–encoded polypeptides. Collectively, these findings provide potentially new insights into the pathogenesis underlying inherited kidney disease caused by mitochondrial variants.
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spelling pubmed-92209452022-06-24 Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia Xu, Chengxian Tong, Lingxiao Rao, Jia Ye, Qing Chen, Yuxia Zhang, Yingying Xu, Jie Mao, Xiaoting Meng, Feilong Shen, Huijun Lu, Zhihong Cang, Xiaohui Fu, Haidong Wang, Shugang Gu, Weiyue Lai, En-Yin Guan, Min-Xin Jiang, Pingping Mao, Jianhua JCI Insight Research Article Inherited kidney diseases are the fifth most common cause of end-stage renal disease (ESRD). Mitochondrial dysfunction plays a vital role in the progression of inherited kidney diseases, while mitochondrial-transfer RNA (mt-tRNA) variants and their pathogenic contributions to kidney disease remain largely unclear. In this study, we identified the pathogenic mt-tRNA(Phe) 616T>C mutation in 3 families and documented that m.616T>C showed a high pathogenic threshold, with both heteroplasmy and homoplasmy leading to isolated chronic kidney disease and hyperuricemia without hematuria, proteinuria, or renal cyst formation. Moreover, 1 proband with homoplamic m.616T>C presented ESRD as a child. No symptoms of nervous system evolvement were observed in these families. Lymphoblast cells bearing m.616T>C exhibited swollen mitochondria, underwent active mitophagy, and showed respiratory deficiency, leading to reduced mitochondrial ATP production, diminished membrane potential, and overproduction of mitochondrial ROS. Pathogenic m.616T>C abolished a highly conserved base pair (A31-U39) in the anticodon stem-loop which altered the structure of mt-tRNA(Phe), as confirmed by a decreased melting temperature and slower electrophoretic mobility of the mutant tRNA. Furthermore, the unstable structure of mt-tRNA(Phe) contributed to a shortage of steady-state mt-tRNA(Phe) and enhanced aminoacylation efficiency, which resulted in impaired mitochondrial RNA translation and a significant decrease in mtDNA–encoded polypeptides. Collectively, these findings provide potentially new insights into the pathogenesis underlying inherited kidney disease caused by mitochondrial variants. American Society for Clinical Investigation 2022-06-08 /pmc/articles/PMC9220945/ /pubmed/35472031 http://dx.doi.org/10.1172/jci.insight.157418 Text en © 2022 Xu et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Xu, Chengxian
Tong, Lingxiao
Rao, Jia
Ye, Qing
Chen, Yuxia
Zhang, Yingying
Xu, Jie
Mao, Xiaoting
Meng, Feilong
Shen, Huijun
Lu, Zhihong
Cang, Xiaohui
Fu, Haidong
Wang, Shugang
Gu, Weiyue
Lai, En-Yin
Guan, Min-Xin
Jiang, Pingping
Mao, Jianhua
Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia
title Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia
title_full Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia
title_fullStr Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia
title_full_unstemmed Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia
title_short Heteroplasmic and homoplasmic m.616T>C in mitochondria tRNA(Phe) promote isolated chronic kidney disease and hyperuricemia
title_sort heteroplasmic and homoplasmic m.616t>c in mitochondria trna(phe) promote isolated chronic kidney disease and hyperuricemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9220945/
https://www.ncbi.nlm.nih.gov/pubmed/35472031
http://dx.doi.org/10.1172/jci.insight.157418
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