Novel and recurrent hemizygous variants in BCORL1 cause oligoasthenoteratozoospermia by interfering transcription

Author:

Wang Yu12345,Xiang Mingfei23456,Zhou Yiru7,Zheng Na23456,Zhang Jingjing23456,Zha Xiaomin23456,Duan Zongliu23456,Wang Fengsong8,Zhang Ying9,Wang Zhongxin7,Cao Yunxia23456,Zhu Fuxi12345ORCID

Affiliation:

1. Reproductive Medicine Center Department of Obstetrics and Gynecology the Second Affiliated Hospital of Anhui Medical University Hefei Anhui China

2. Reproductive Medicine Center Department of Obstetrics and Gynecology the First Affiliated Hospital of Anhui Medical University Hefei Anhui China

3. NHC Key Laboratory of Study on Abnormal Gametes and Reproductive Tract Anhui Medical University Hefei Anhui China

4. Key Laboratory of Population Health Across Life Cycle Anhui Medical University, Ministry of Education of the People's Republic of China Hefei Anhui China

5. Anhui Province Key Laboratory of Reproductive Health and Genetics Hefei Anhui China

6. Biopreservation and Artificial Organs, Anhui Provincial Engineering Research Center Anhui Medical University Hefei Anhui China

7. Department of clinical laboratory The First Affiliated Hospital of Anhui Medical University Hefei Anhui China

8. School of Life Science Anhui Medical University Hefei Anhui China

9. Department of Obstetrics and Gynecology the First Affiliated Hospital of Anhui Medical University Hefei Anhui China

Abstract

AbstractBackgroundOligoasthenoteratozoospermia (OAT) is a common cause of male infertility, of which the causes remain largely unknown. Recently, BCORL1 was identified as a contributor to male infertility from non‐obstructive azoospermia (NOA) to OAT.ObjectivesTo identify novel and hotspot variants in BCORL1 from infertile men with OAT and reveal their outcomes of assisted reproductive treatments (ARTs).Materials and methodsForty‐six infertile men characterized by OAT were recruited from 2017 to 2022. Variants in OAT patients were identified by whole‐exome sequencing (WES) and verified by Sanger sequencing. Papanicolaou staining was used for sperm morphology analysis. Pathogenicity of BCORL1 variants were analyzed by bioinformatics analysis, and further confirmed in vitro by using recombinant plasmids and cells. Meanwhile, ARTs were performed on these patients to investigate the appropriate clinical treatment strategy.ResultsWe identified a novel hemizygous missense variant (NM_021946: c.G4171A; p.G1391R) and a recurrent variant (NM_021946: c.T2615G; p.V872G) in BCORL1 from four OAT patients. Notably, routine semen assessment and Papanicolaou staining revealed a special OAT phenotype of patients with BCORL1 variants, whose rare mature sperm characterized by acephalic and abnormal acrosome. Pathogenicity analysis showed the interaction between BCORL1 with histone deacetylases (HDACs) were disrupted after variance, accompanied with epigenetic alterations and finally the orderly transcriptions of spermatogenetic genes were interfering. Besides, clinical record presented the poor outcomes of ARTs in these patients with BCORL1 variants.Discussion and conclusionsOur findings further expand the variant spectrum of BCORL1 related to OAT, and provide new evidences that BCORL1 acts as an important transcriptional regulator, participating in epigenetic regulation and directing the expression of key genes throughout spermatogenesis. The outcomes of ARTs will facilitate the genetic counseling and clinical treatment of infertile men with BCORL1 variants in the future.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Anhui Province

Publisher

Wiley

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