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March 25, 2026Reproduction0 citationsOpen Access

Ccdc117 deficiency triggers hyperandrogenemia, maintaining normal sperm production despite reduced testis size

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MZMin ZangWHW.Y HuangNWNingling Wang

Key Points

  • This research aims to uncover the role of CCDC117 in local testicular testosterone production and its impact on male fertility.
  • Generated ccdc117 knockout mice to assess testicular function and testosterone levels
  • Measured testis size and seminiferous tubule area
  • Analyzed serum and intratesticular testosterone levels
  • Evaluated sperm production and fertility outcomes
  • Ccdc117 knockout mice showed a 21% reduction in testis size
  • Serum testosterone levels increased two-fold while LH levels remained unchanged
  • Intratesticular testosterone increased by approximately 1.5-fold
  • Sperm production and fertility remained near-normal despite reduced testis size

Abstract

The local regulation of testicular steroidogenesis is essential for male fertility but remains incompletely understood. Here, we identify the testis-enriched protein CCDC117 as a critical, local brake on testicular testosterone production. Ccdc117 knockout mice exhibited a paradoxical phenotype: significant reduced testis size (∼21% reduction in weight) accompanied by diminished seminiferous tubule area, yet displaying fully preserved sperm production and near-normal fertility. Mechanistically, loss of CCDC117 triggers a cell-autonomous, compensatory upregulation of the steroidogenic pathway specifically in Leydig cells, leading to a two-fold increase in serum testosterone without a rise in LH. Consistently, intratesticular testosterone levels were significantly elevated (approximately 1.5-fold), directly confirming enhanced local androgen production. This gonadotropin-independent hyperandrogenemia likely supports the maintenance of normal spermatogenic cell numbers within the compromised tubules, facilitating higher-efficiency spermatogenesis that ultimately preserves male fertility in the context of a smaller testis. Collectively, these findings demonstrate that CCDC117 deficiency releases a constitutive brake on Leydig cell steroidogenesis. The resulting compensatory hyperandrogenemia maintains reproductive function under structural compromise, thus uncovering a previously unrecognized local mechanism that ensures reproductive resilience.

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Cite This Study

Zang et al. (2026) studied this question.

synapsesocial.com/papers/69c37bd4b34aaaeb1a67ea96https://doi.org/10.1093/reprod/xaag037
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