DOI: 10.3390/medicina62081508 ISSN: 1648-9144

A Novel Hemizygous CDX4 Missense Variant Identified in a Taiwanese Man with Severe Teratozoospermia

Chin-Fong Au, Ya-Yun Wang, Tsung-Hsuan Lai, Chying-Chyuan Chan, Chih-Chun Ke, Shiu-Dong Chung, Ying-Hung Lin

Background and Objectives: Male factors account for approximately 30–50% of subfertile couples. Teratozoospermia is one of the major causes of male infertility; however, the genetic factors underlying many cases remain incompletely understood. This study aimed to identify potential genetic variants associated with teratozoospermia and to investigate the possible involvement of Caudal-Type Homeobox 4 (CDX4) in sperm morphogenesis. Materials and Methods: Whole-exome sequencing was performed in 44 individuals with teratozoospermia. A rare CDX4 variant (NM_005193.2, c.103G>T; NP_005184.1, Gly35Cys) was identified and confirmed by Sanger sequencing. Because CDX4 is located on the X chromosome, this variant was interpreted as hemizygous in the male patient. Sperm morphology, CDX4 localization, public GEO transcriptomic data (GSE6969), and CDX4 expression during murine spermiogenesis were analyzed. Results: The CDX4 p.Gly35Cys variant is located within the Caudal-like transactivation domain, a conserved region involved in transcriptional regulation. Spermatozoa from the patient carrying this variant exhibited severe morphological abnormalities, predominantly involving sperm-head defects, together with aberrant CDX4 localization along the midpiece and tail, in contrast to the neck- and annulus-enriched distribution observed in control spermatozoa. Reanalysis of the GEO dataset showed increased CDX4 transcript levels in teratozoospermic samples compared with normozoospermic controls. During murine spermiogenesis, CDX4 was detected in the nuclei of spermatogonia and spermatocytes and subsequently localized to the sperm head and neck/tail regions during sperm morphogenesis. Conclusions: CDX4 c.103G>T (p.Gly35Cys) is a rare hemizygous X-linked candidate variant associated with severe teratozoospermia in a single patient. Further cohort-based, segregation, and functional studies are required to clarify its role in sperm morphogenesis.

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