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PMFBP1 的缺失通过下调 HDAC3 表达来扰乱小鼠精子发生。

Loss of PMFBP1 Disturbs Mouse Spermatogenesis by Downregulating HDAC3 Expression.

机构信息

School of Life Science, Anhui Medical University, Hefei, 230022, China.

Reproductive Medicine Center, Anhui No. 2 Provincial People's Hospital, Hefei, 230041, Anhui, China.

出版信息

J Assist Reprod Genet. 2023 Aug;40(8):1865-1879. doi: 10.1007/s10815-023-02874-0. Epub 2023 Jul 10.

Abstract

PURPOSE

Polyamine modulating factor 1 binding protein (PMFBP1) acts as a scaffold protein for the maintenance of sperm structure. The aim of this study was further to identify the new role and molecular mechanism of PMFBP1 during mouse spermatogenesis.

METHODS AND RESULTS

We identified a profile of proteins interacting with PMFBP1 by immunoprecipitation combined with mass spectrometry and demonstrated that class I histone deacetylases, particularly HDAC3 and chaperonin-containing TCP1 subunit 3 (CCT3), were potential interaction partners of PMFBP1 based on network analysis of protein-protein interactions and co-immunoprecipitation. Immunoblotting and immunochemistry assays showed that loss of Pmfbp1 would result in a decline in HDACs and change the proteomic profile of mouse testis, in which differently expressed proteins are associated with spermatogenesis and assembly of flagella, which was proved by proteomic analysis of testis tissue obtained from Pmfbp1 mice. After integrating with transcriptome data for Hdac3 and Sox30 round sperm obtained from a public database, RT-qPCR confirmed ring finger protein 151 (Rnf151) and ring finger protein 133 (Rnf133) were key downstream response factors of the Pmfbp1-Hdac axis affecting mouse spermatogenesis.

CONCLUSION

Taken together, this study indicates a previously unidentified molecular mechanism of PMFBP1 in spermatogenesis whereby PMFBP1 interacts with CCT3, affecting the expression of HDAC3, followed by the downregulation of RNF151 and RNF133, resulting in an abnormal phenotype of sperm beyond the headless sperm tails. These findings not only advance our understanding of the function of Pmfbp1 in mouse spermatogenesis but also provide a typical case for multi-omics analysis used in the functional annotation of specific genes.

摘要

目的

多胺调节因子 1 结合蛋白(PMFBP1)作为维持精子结构的支架蛋白。本研究旨在进一步确定 PMFBP1 在小鼠精子发生过程中的新作用和分子机制。

方法和结果

我们通过免疫沉淀结合质谱鉴定了与 PMFBP1 相互作用的蛋白质谱,并基于蛋白质-蛋白质相互作用网络分析和共免疫沉淀,证明了 I 类组蛋白去乙酰化酶,特别是 HDAC3 和含伴侣素的 TCP1 亚基 3(CCT3),是 PMFBP1 的潜在相互作用伙伴。免疫印迹和免疫组织化学检测表明,Pmfbp1 的缺失会导致 HDACs 的下降,并改变小鼠睾丸的蛋白质组谱,其中差异表达的蛋白质与精子发生和鞭毛组装有关,这一点通过从 Pmfbp1 小鼠获得的睾丸组织的蛋白质组分析得到了证明。将从公共数据库获得的 Hdac3 和 Sox30 圆形精子的转录组数据与该结果整合后,RT-qPCR 证实了环指蛋白 151(Rnf151)和环指蛋白 133(Rnf133)是影响小鼠精子发生的 PMFBP1-Hdac 轴的关键下游反应因子。

结论

综上所述,本研究表明 PMFBP1 在精子发生中存在一个以前未被识别的分子机制,即 PMFBP1 与 CCT3 相互作用,影响 HDAC3 的表达,随后下调 RNF151 和 RNF133,导致精子头后出现异常表型,出现无头精子尾。这些发现不仅提高了我们对 Pmfbp1 在小鼠精子发生中的功能的理解,而且为多组学分析在特定基因的功能注释中的应用提供了一个典型案例。

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