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Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder

PURPOSES: This study was conducted to identify the frequent mutations from reported Chinese Gitelman syndrome (GS) patients, to predict the three-dimensional structure change of human Na–Cl co-transporter (hNCC), and to test the activity of these mutations and some novel mutations in vitro and in vi...

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Autores principales: Jiang, Lanping, Peng, Xiaoyan, Zhao, Bingbin, Zhang, Lei, Xu, Lubin, Li, Xuemei, Nie, Min, Chen, Limeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8859957/
https://www.ncbi.nlm.nih.gov/pubmed/34860177
http://dx.doi.org/10.1530/EC-21-0262
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author Jiang, Lanping
Peng, Xiaoyan
Zhao, Bingbin
Zhang, Lei
Xu, Lubin
Li, Xuemei
Nie, Min
Chen, Limeng
author_facet Jiang, Lanping
Peng, Xiaoyan
Zhao, Bingbin
Zhang, Lei
Xu, Lubin
Li, Xuemei
Nie, Min
Chen, Limeng
author_sort Jiang, Lanping
collection PubMed
description PURPOSES: This study was conducted to identify the frequent mutations from reported Chinese Gitelman syndrome (GS) patients, to predict the three-dimensional structure change of human Na–Cl co-transporter (hNCC), and to test the activity of these mutations and some novel mutations in vitro and in vivo. METHODS: SLC12A3 gene mutations in Chinese GS patients previously reported in the PubMed, China National Knowledge Infrastructure, and Wanfang database were summarized. Predicted configurations of wild type (WT) and mutant proteins were achieved using the I-TASSER workplace. Six missense mutations (T60M, L215F, D486N, N534K, Q617R, and R928C) were generated by site-directed mutagenesis. (22)Na(+) uptake experiment was carried out in the Xenopus laevisoocyte expression system. In the study, 35 GS patients and 20 healthy volunteers underwent the thiazide test. RESULTS: T60M, T163M, D486N, R913Q, R928C, and R959frameshift were frequent SLC12A3 gene mutations (mutated frequency >3%) in 310 Chinese GS families. The protein’s three-dimensional structure was predicted to be altered in all mutations. Compared with WT hNCC, the thiazide-sensitive (22)Na+ uptake was significantly diminished for all six mutations: T60M 22 ± 9.2%, R928C 29 ± 12%, L215F 38 ± 14%, N534K 41 ± 15.5%, Q617R 63 ± 22.1%, and D486N 77 ± 20.4%. In thiazide test, the net increase in chloride fractional excretion in 20 healthy controls was significantly higher than GS patients with or without T60M or D486N mutations. CONCLUSIONS: Frequent mutations (T60M, D486N, and R928C) and novel mutations (L215F, N534K, and Q617R) lead to protein structure alternation and protein dysfunction verified by (22)Na+ uptake experiment in vitro and thiazide test on the patients.
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spelling pubmed-88599572022-02-23 Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder Jiang, Lanping Peng, Xiaoyan Zhao, Bingbin Zhang, Lei Xu, Lubin Li, Xuemei Nie, Min Chen, Limeng Endocr Connect Research PURPOSES: This study was conducted to identify the frequent mutations from reported Chinese Gitelman syndrome (GS) patients, to predict the three-dimensional structure change of human Na–Cl co-transporter (hNCC), and to test the activity of these mutations and some novel mutations in vitro and in vivo. METHODS: SLC12A3 gene mutations in Chinese GS patients previously reported in the PubMed, China National Knowledge Infrastructure, and Wanfang database were summarized. Predicted configurations of wild type (WT) and mutant proteins were achieved using the I-TASSER workplace. Six missense mutations (T60M, L215F, D486N, N534K, Q617R, and R928C) were generated by site-directed mutagenesis. (22)Na(+) uptake experiment was carried out in the Xenopus laevisoocyte expression system. In the study, 35 GS patients and 20 healthy volunteers underwent the thiazide test. RESULTS: T60M, T163M, D486N, R913Q, R928C, and R959frameshift were frequent SLC12A3 gene mutations (mutated frequency >3%) in 310 Chinese GS families. The protein’s three-dimensional structure was predicted to be altered in all mutations. Compared with WT hNCC, the thiazide-sensitive (22)Na+ uptake was significantly diminished for all six mutations: T60M 22 ± 9.2%, R928C 29 ± 12%, L215F 38 ± 14%, N534K 41 ± 15.5%, Q617R 63 ± 22.1%, and D486N 77 ± 20.4%. In thiazide test, the net increase in chloride fractional excretion in 20 healthy controls was significantly higher than GS patients with or without T60M or D486N mutations. CONCLUSIONS: Frequent mutations (T60M, D486N, and R928C) and novel mutations (L215F, N534K, and Q617R) lead to protein structure alternation and protein dysfunction verified by (22)Na+ uptake experiment in vitro and thiazide test on the patients. Bioscientifica Ltd 2021-12-03 /pmc/articles/PMC8859957/ /pubmed/34860177 http://dx.doi.org/10.1530/EC-21-0262 Text en © The authors https://creativecommons.org/licenses/by-nc/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. (https://creativecommons.org/licenses/by-nc/4.0/)
spellingShingle Research
Jiang, Lanping
Peng, Xiaoyan
Zhao, Bingbin
Zhang, Lei
Xu, Lubin
Li, Xuemei
Nie, Min
Chen, Limeng
Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder
title Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder
title_full Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder
title_fullStr Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder
title_full_unstemmed Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder
title_short Frequent SLC12A3 mutations in Chinese Gitelman syndrome patients: structure and function disorder
title_sort frequent slc12a3 mutations in chinese gitelman syndrome patients: structure and function disorder
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8859957/
https://www.ncbi.nlm.nih.gov/pubmed/34860177
http://dx.doi.org/10.1530/EC-21-0262
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