MYRF haploinsufficiency causes 46,XY and 46,XX disorders of sex development: bioinformatics consideration

Author:

Hamanaka Kohei1,Takata Atsushi1,Uchiyama Yuri12,Miyatake Satoko13,Miyake Noriko1,Mitsuhashi Satomi1,Iwama Kazuhiro1,Fujita Atsushi1,Imagawa Eri1,Alkanaq Ahmed N1,Koshimizu Eriko1,Azuma Yoshiki14,Nakashima Mitsuko5,Mizuguchi Takeshi1,Saitsu Hirotomo5,Wada Yuka6,Minami Sawako7,Katoh-Fukui Yuko8,Masunaga Yohei9,Fukami Maki8,Hasegawa Tomonobu10,Ogata Tsutomu9,Matsumoto Naomichi1

Affiliation:

1. Department of Human Genetics

2. Department of Oncology

3. Clinical Genetics Department, Yokohama City University Hospital, Yokohama, Kanagawa, Japan

4. Department of Pediatrics, Nagoya University Graduate School of Medicine, Nagoya, Aichi, Japan

5. Department of Biochemistry, Hamamatsu University School of Medicine, Hamamatsu, Shizuoka, Japan

6. Department of Neonatology, National Center for Child Health and Development, Setagaya, Tokyo, Japan

7. Deparment of Obstetrics and Gynecology, Wakayama Medical University, Wakayama, Wakayama, Japan

8. Department of Molecular Endocrinology, National Center for Child Health and Development, Setagaya, Tokyo, Japan

9. Department of Pediatrics, Hamamatsu University School of Medicine, Hamamatsu, Shizuoka, Japan

10. Department of Pediatrics, Keio University School of Medicine, Shinjuku, Tokyo, Japan

Abstract

AbstractDisorders of sex development (DSDs) are defined as congenital conditions in which chromosomal, gonadal or anatomical sex is atypical. In many DSD cases, genetic causes remain to be elucidated. Here, we performed a case–control exome sequencing study comparing gene-based burdens of rare damaging variants between 26 DSD cases and 2625 controls. We found exome-wide significant enrichment of rare heterozygous truncating variants in the MYRF gene encoding myelin regulatory factor, a transcription factor essential for oligodendrocyte development. All three variants occurred de novo. We identified an additional 46,XY DSD case of a de novo damaging missense variant in an independent cohort. The clinical symptoms included hypoplasia of Müllerian derivatives and ovaries in 46,XX DSD patients, defective development of Sertoli and Leydig cells in 46,XY DSD patients and congenital diaphragmatic hernia in one 46,XY DSD patient. As all of these cells and tissues are or partly consist of coelomic epithelium (CE)-derived cells (CEDC) and CEDC developed from CE via proliferaiton and migration, MYRF might be related to these processes. Consistent with this hypothesis, single-cell RNA sequencing of foetal gonads revealed high expression of MYRF in CE and CEDC. Reanalysis of public chromatin immunoprecipitation sequencing data for rat Myrf showed that genes regulating proliferation and migration were enriched among putative target genes of Myrf. These results suggested that MYRF is a novel causative gene of 46,XY and 46,XX DSD and MYRF is a transcription factor regulating CD and/or CEDC proliferation and migration, which is essential for development of multiple organs.

Funder

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Ministry of Health, Labour and Welfare

Ichiro Kanehara Foundation for the Promotion of Medical Sciences and Medical Care

Takeda Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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