Liu Ziao, Pan Min, Li Jingya, Li Li, Wang Tongsheng
Department of Physiology and Pharmacology, Anhui University of Chinese Medicine, Hefei, Anhui, China.
Cell Biochem Funct. 2025 Jan;43(1):e70042. doi: 10.1002/cbf.70042.
The study of the mechanism of oligoasthenospermia, which is a major cause of male infertility, has been the focus of research in the field of male reproduction. TAp73, a member of the p53 family of oncogenes, is endowed with tumor-suppressing activity due to its structural and functional homology with p53. It has been found that TAp73, plays a key role in spermatogenesis and maintaining male reproduction. When TAp73 is low-expressed or absent, the process of spermatogenesis is severely impaired, and mice deficient in TAp73 exhibit spermatogonial DNA damage, disturbed apical cytoplasmic specialization, and spermatocyte malformations resulting in reduced male fertility. Nevertheless, when TAp73 is overexpressed, it not only drives exogenous death receptors to regulate germ cell apoptosis, but also interacts with its various substrate proteins to promote the translocation of cytoplasmic Bax proteins to the mitochondria, resulting in the upregulation of the Bax/Bcl-2 ratio on the mitochondrial membrane and triggering a series of mitochondrial apoptotic effects. In this article, we will analyze the mechanism of TAp73 and sperm apoptosis, and elaborate the mechanism of TAp73 upregulation, exogenous apoptosis pathway and mitochondrial apoptosis pathway to systematically explain that the process of apoptosis induced by high expression of TAp73 is not fixed and single, but is interconnected, so as to provide a basis for the treatment of oligoasthenospermia and the research and development of new drugs using TAp73 as a target.
少弱精子症是男性不育的主要原因之一,对其发病机制的研究一直是男性生殖领域的研究热点。TAp73是一种抑癌基因p53家族的成员,因其与p53在结构和功能上具有同源性而具有肿瘤抑制活性。研究发现,TAp73在精子发生和维持男性生殖功能中起关键作用。当TAp73低表达或缺失时,精子发生过程会受到严重损害,TAp73基因缺失的小鼠表现出精原细胞DNA损伤、顶端细胞质特化紊乱以及精母细胞畸形,从而导致男性生育力下降。然而,当TAp73过表达时,它不仅驱动外源性死亡受体调节生殖细胞凋亡,还与其各种底物蛋白相互作用,促进细胞质中Bax蛋白转位至线粒体,导致线粒体膜上Bax/Bcl-2比值上调,引发一系列线粒体凋亡效应。在本文中,我们将分析TAp73与精子凋亡的机制,阐述TAp73上调、外源性凋亡途径和线粒体凋亡途径的机制,系统地解释TAp73高表达诱导的凋亡过程并非固定单一,而是相互关联的,从而为少弱精子症的治疗以及以TAp73为靶点的新药研发提供依据。