Deleterious variants in X-linked RHOXF1 cause male infertility with oligo- and azoospermia

Author:

Yi Sibing1,Wang Weili123,Su Lilan1,Meng Lanlan12,Li Yong1,Tan Chen1,Liu Qiang14,Zhang Huan12,Fan Liqing125,Lu Guangxiu125,Hu Liang1235ORCID,Du Juan125,Lin Ge1235ORCID,Tan Yue-Qiu1235ORCID,Tu Chaofeng12ORCID,Zhang Qianjun1235ORCID

Affiliation:

1. Institute of Reproductive and Stem Cell Engineering, NHC Key Laboratory of Human Stem Cell and Reproductive Engineering, School of Basic Medical Science, Central South University , Changsha, Hunan, China

2. Clinical Research Center for Reproduction and Genetics in Hunan Province, Reproductive and Genetic Hospital of CITIC-XIANGYA , Changsha, Hunan, China

3. Center for Biology Post-Doctoral studies, College of Life Science, Hunan Normal University, Changsha , China

4. Department of Hepatobiliary Surgery, Hunan Cancer Hospital and the Affiliated Cancer of Xiangya School of Medicine, Central South University, Changsha , China

5. Key Laboratory of Stem Cell and Reproduction Engineering, Ministry of Health , Changsha, China

Abstract

Abstract Oligozoospermia and azoospermia are two common phenotypes of male infertility characterized by massive sperm defects owing to failure of spermatogenesis. The deleterious impact of candidate variants with male infertility is to be explored. In our study, we identified three hemizygous missense variants (c.388G>A: p.V130M, c.272C>T: p.A91V, and c.467C>T: p.A156V) and one hemizygous nonsense variant (c.478C>T: p.R160X) in the Rhox homeobox family member 1 gene (RHOXF1) in four unrelated cases from a cohort of 1201 infertile Chinese men with oligo- and azoospermia using whole-exome sequencing and Sanger sequencing. RHOXF1 was absent in the testicular biopsy of one patient (c.388G>A: p.V130M) whose histological analysis showed a phenotype of Sertoli cell-only syndrome. In vitro experiments indicated that RHOXF1 mutations significantly reduced the content of RHOXF1 protein in HEK293T cells. Specifically, the p.V130M, p.A156V, and p.R160X mutants of RHOXF1 also led to increased RHOXF1 accumulation in cytoplasmic particles. Luciferase assays revealed that p.V130M and p.R160X mutants may disrupt downstream spermatogenesis by perturbing the regulation of doublesex and mab-3 related transcription factor 1 (DMRT1) promoter activity. Furthermore, ICSI treatment could be beneficial in the context of oligozoospermia caused by RHOXF1 mutations. In conclusion, our findings collectively identified mutated RHOXF1 to be a disease-causing X-linked gene in human oligo- and azoospermia.

Funder

National Key Research and Developmental Program of China

National Natural Science Foundation of China

Outstanding Youth Foundation of Hunan Provincial Natural Science Foundation of China

Hunan Provincial Natural Science Foundation of China

China Postdoctoral Science Foundation

Graduate Research Innovation Project of Central South University

Publisher

Oxford University Press (OUP)

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