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Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice

Male infertility is a prevalent disorder distressing an estimated 70 million people worldwide. Despite continued progress in understanding the causes of male infertility, idiopathic sperm abnormalities such as multiple morphological abnormalities of sperm flagella (MMAF) still account for about 30%...

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Autores principales: Khan, Ranjha, Zaman, Qumar, Chen, Jing, Khan, Manan, Ma, Ao, Zhou, Jianteng, Zhang, Beibei, Ali, Asim, Naeem, Muhammad, Zubair, Muhammad, Zhao, Daren, Shah, Wasim, Khan, Mazhar, Zhang, Yuanwei, Xu, Bo, Zhang, Huan, Shi, Qinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8635859/
https://www.ncbi.nlm.nih.gov/pubmed/34867808
http://dx.doi.org/10.3389/fendo.2021.765639
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author Khan, Ranjha
Zaman, Qumar
Chen, Jing
Khan, Manan
Ma, Ao
Zhou, Jianteng
Zhang, Beibei
Ali, Asim
Naeem, Muhammad
Zubair, Muhammad
Zhao, Daren
Shah, Wasim
Khan, Mazhar
Zhang, Yuanwei
Xu, Bo
Zhang, Huan
Shi, Qinghua
author_facet Khan, Ranjha
Zaman, Qumar
Chen, Jing
Khan, Manan
Ma, Ao
Zhou, Jianteng
Zhang, Beibei
Ali, Asim
Naeem, Muhammad
Zubair, Muhammad
Zhao, Daren
Shah, Wasim
Khan, Mazhar
Zhang, Yuanwei
Xu, Bo
Zhang, Huan
Shi, Qinghua
author_sort Khan, Ranjha
collection PubMed
description Male infertility is a prevalent disorder distressing an estimated 70 million people worldwide. Despite continued progress in understanding the causes of male infertility, idiopathic sperm abnormalities such as multiple morphological abnormalities of sperm flagella (MMAF) still account for about 30% of male infertility. Recurrent mutations in DNAH1 have been reported to cause MMAF in various populations, but the underlying mechanism is still poorly explored. This study investigated the MMAF phenotype of two extended consanguineous Pakistani families without manifesting primary ciliary dyskinesia symptoms. The transmission electron microscopy analysis of cross-sections of microtubule doublets revealed a missing central singlet of microtubules and a disorganized fibrous sheath. SPAG6 staining, a marker generally used to check the integration of microtubules of central pair, further confirmed the disruption of central pair in the spermatozoa of patients. Thus, whole-exome sequencing (WES) was performed, and WES analysis identified two novel mutations in the DNAH1 gene that were recessively co-segregating with MMAF phenotype in both families. To mechanistically study the impact of identified mutation, we generated Dnah1 mice models to confirm the in vivo effects of identified mutations. Though Dnah1 (△iso1/△iso1) mutant mice represented MMAF phenotype, no significant defects were observed in the ultrastructure of mutant mice spermatozoa. Interestingly, we found DNAH1 isoform2 in Dnah1 (△iso1/△iso1) mutant mice that may be mediating the formation of normal ultrastructure in the absence of full-length protein. Altogether we are first reporting the possible explanation of inconsistency between mouse and human DNAH1 mutant phenotypes, which will pave the way for further understanding of the underlying pathophysiological mechanism of MMAF.
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spelling pubmed-86358592021-12-02 Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice Khan, Ranjha Zaman, Qumar Chen, Jing Khan, Manan Ma, Ao Zhou, Jianteng Zhang, Beibei Ali, Asim Naeem, Muhammad Zubair, Muhammad Zhao, Daren Shah, Wasim Khan, Mazhar Zhang, Yuanwei Xu, Bo Zhang, Huan Shi, Qinghua Front Endocrinol (Lausanne) Endocrinology Male infertility is a prevalent disorder distressing an estimated 70 million people worldwide. Despite continued progress in understanding the causes of male infertility, idiopathic sperm abnormalities such as multiple morphological abnormalities of sperm flagella (MMAF) still account for about 30% of male infertility. Recurrent mutations in DNAH1 have been reported to cause MMAF in various populations, but the underlying mechanism is still poorly explored. This study investigated the MMAF phenotype of two extended consanguineous Pakistani families without manifesting primary ciliary dyskinesia symptoms. The transmission electron microscopy analysis of cross-sections of microtubule doublets revealed a missing central singlet of microtubules and a disorganized fibrous sheath. SPAG6 staining, a marker generally used to check the integration of microtubules of central pair, further confirmed the disruption of central pair in the spermatozoa of patients. Thus, whole-exome sequencing (WES) was performed, and WES analysis identified two novel mutations in the DNAH1 gene that were recessively co-segregating with MMAF phenotype in both families. To mechanistically study the impact of identified mutation, we generated Dnah1 mice models to confirm the in vivo effects of identified mutations. Though Dnah1 (△iso1/△iso1) mutant mice represented MMAF phenotype, no significant defects were observed in the ultrastructure of mutant mice spermatozoa. Interestingly, we found DNAH1 isoform2 in Dnah1 (△iso1/△iso1) mutant mice that may be mediating the formation of normal ultrastructure in the absence of full-length protein. Altogether we are first reporting the possible explanation of inconsistency between mouse and human DNAH1 mutant phenotypes, which will pave the way for further understanding of the underlying pathophysiological mechanism of MMAF. Frontiers Media S.A. 2021-11-17 /pmc/articles/PMC8635859/ /pubmed/34867808 http://dx.doi.org/10.3389/fendo.2021.765639 Text en Copyright © 2021 Khan, Zaman, Chen, Khan, Ma, Zhou, Zhang, Ali, Naeem, Zubair, Zhao, Shah, Khan, Zhang, Xu, Zhang and Shi https://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 Endocrinology
Khan, Ranjha
Zaman, Qumar
Chen, Jing
Khan, Manan
Ma, Ao
Zhou, Jianteng
Zhang, Beibei
Ali, Asim
Naeem, Muhammad
Zubair, Muhammad
Zhao, Daren
Shah, Wasim
Khan, Mazhar
Zhang, Yuanwei
Xu, Bo
Zhang, Huan
Shi, Qinghua
Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice
title Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice
title_full Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice
title_fullStr Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice
title_full_unstemmed Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice
title_short Novel Loss-of-Function Mutations in DNAH1 Displayed Different Phenotypic Spectrum in Humans and Mice
title_sort novel loss-of-function mutations in dnah1 displayed different phenotypic spectrum in humans and mice
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8635859/
https://www.ncbi.nlm.nih.gov/pubmed/34867808
http://dx.doi.org/10.3389/fendo.2021.765639
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