
EID3 plays a vital role in spermatogenesis, particularly in meiosis and chromatin condensation. In a study using Eid3 knockout mice, loss of EID3 resulted in significantly decreased sperm count, motility, and abnormal morphology. Deficiency impaired the histone-to-protamine transition, reduced histone acetylation, and disrupted chromatin condensation. Histological analyses revealed abnormal spermatocyte development and increased apoptosis, leading to diminished sperm production. These findings underscore EID3's essential function in male reproduction, with potential implications for diagnosing and treating male infertility. Given EID3’s high expression in human testes, it may represent a promising therapeutic target for infertility research.
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