Related Experiment Video
Updated: Mar 24, 2026

Establishment of Rat Models Mimicking Gender-affirming Hormone Therapies
Published on: January 10, 2025
Ccdc117 deficiency triggers hyperandrogenemia, maintaining normal sperm production despite reduced testis size
Min Zang1,2, Wei Huang3, Ningling Wang4,5
1Department of Reproductive Medicine, Jinling Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing, Jiangsu, 210002, China.
Abstract:
Local testosterone regulation is critical for male fertility but poorly understood. We show that loss of CCDC117 triggers testosterone elevation despite lower luteinizing hormone levels, revealing a gonadotropin-independent compensatory mechanism that preserves fertility in smaller testes. AbstractThe 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 2-fold increase in serum testosterone without a rise in luteinizing hormone. Consistently, intratesticular testosterone levels were significantly elevated (∼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.
Insights
The protein CCDC117 acts as a brake on testosterone production. Its absence in mice led to smaller testes but maintained fertility through increased local androgen production.
Area of Science:
- Reproductive Biology
- Endocrinology
- Molecular Genetics
Background:
- Testicular steroidogenesis is crucial for male fertility but its local regulation is not fully understood.
- Testosterone production is tightly controlled within the testes to ensure reproductive function.
Purpose of the Study:
- To identify novel regulators of local testicular testosterone production.
- To investigate the role of the testis-enriched protein CCDC117 in male reproductive physiology.
Main Methods:
- Generation and analysis of Ccdc117 knockout mice.
- Assessment of testis size, sperm production, and fertility.
- Measurement of serum and intratesticular testosterone levels.
- Evaluation of Leydig cell steroidogenic pathway activity.
Main Results:
- Ccdc117 knockout mice showed reduced testis size but maintained sperm production and fertility.
- Loss of CCDC117 caused a cell-autonomous upregulation of steroidogenesis in Leydig cells.
- Serum and intratesticular testosterone levels were significantly elevated in knockout mice, independent of LH.
Conclusions:
- CCDC117 acts as a local brake on testicular testosterone production.
- Its deficiency leads to compensatory hyperandrogenemia, preserving fertility despite testicular structural compromise.
- This uncovers a novel mechanism of reproductive resilience in males.
Related Concept Videos
Infertility in Males
Disorders of the Male Reproductive System
Prostate disorders are another major concern. These conditions can impair urinary flow due to the prostate's location around the urethra....
Sex-linked Disorders
Testosterone: Functions and Regulation
Spermatogenesis
Testes: Histology
The spermatogenic cells, responsible for producing sperm, are...

