HDAC6-dependent deacetylation of NGF dictates its ubiquitination and maintains primordial follicle dormancy

HDAC6 依赖的 NGF 去乙酰化决定了其泛素化并维持原始卵泡休眠

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作者:Tuo Zhang, Yuntong Tong, Rengguang Zhu, Yaoyun Liang, Jixian Zhang, Chujiao Hu, Meina He, Zhu Hu, Zhiyi Shen, Jin Niu, Jingjing Zhang, Yuanyuan Yu, Bangming Jin, Shan Lei, Zhirui Zeng, Yingmin Wu, Zengmei Cheng, Ziwen Xiao, Bing Guo, Shuyun Zhao, Guoqiang Xu, Wei Pan, Tengxiang Chen

Conclusions

The physiological significance of the high expression of HDAC6 in most primordial follicles is to reduce NGF expression and prevent primordial follicle activation to maintain female fertility. Reduced HDAC6 expression increases NGF expression in primordial follicles, activating their development and contributing to reproduction. Our study provides a clinical reference value for fertility preservation.

Methods

We used human ovarian cortical biopsy specimens, granulosa cells from diminished ovarian reserve (DOR) patients, Hdac6-overexpressing transgenic mouse model, and RNA sequencing to analyze the crucial roles of histone deacetylase 6 (HDAC6) in fertility preservation and primordial follicle activation.

Results

In the present study, we found that HDAC6 was highly expressed in most dormant primordial follicles. The HDAC6 expression was reduced accompanying reproductive senescence in human and mouse ovaries. Overexpression of Hdac6 delayed the rate of primordial follicle activation, thereby prolonging the mouse reproductive lifespan. Short-term inhibition of HDAC6 promoted primordial follicle activation and follicular development in humans and mice. Mechanism studies revealed that HDAC6 directly interacted with NGF, reducing acetylation modification of NGF and thereby accelerating its ubiquitination degradation. Consequently, the reduced NGF protein level maintained the dormancy of primordial follicles. Conclusions: The physiological significance of the high expression of HDAC6 in most primordial follicles is to reduce NGF expression and prevent primordial follicle activation to maintain female fertility. Reduced HDAC6 expression increases NGF expression in primordial follicles, activating their development and contributing to reproduction. Our study provides a clinical reference value for fertility preservation.

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