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热休克蛋白A2(HSPA2):在生殖细胞发育和精子功能中的调控作用

Heat Shock Protein A2 (HSPA2): Regulatory Roles in Germ Cell Development and Sperm Function.

作者信息

Nixon Brett, Bromfield Elizabeth G, Cui Jinwei, De Iuliis Geoffry N

机构信息

Priority Research Centre for Reproductive Science, School of Environmental and Life Sciences, The University of Newcastle, University Drive, Callaghan, NSW, 2308, Australia.

出版信息

Adv Anat Embryol Cell Biol. 2017;222:67-93. doi: 10.1007/978-3-319-51409-3_4.

Abstract

Among the numerous families of heat shock protein (HSP) that have been implicated in the regulation of reproductive system development and function, those belonging to the 70 kDa HSP family have emerged as being indispensable for male fertility. In particular, the testis-enriched heat shock 70 kDa protein 2 (HSPA2) has been shown to be critical for the progression of germ cell differentiation during spermatogenesis in the mouse model. Beyond this developmentally important window, mounting evidence has also implicated HSPA2 in the functional transformation of the human sperm cell during their ascent of the female reproductive tract. Specifically, HSPA2 appears to coordinate the remodelling of specialised sperm domains overlying the anterior region of the sperm head compatible with their principle role in oocyte recognition. The fact that levels of the HSPA2 protein in mature spermatozoa tightly correlate with the efficacy of oocyte binding highlight its utility as a powerful prognostic biomarker of male fertility. In this chapter, we consider the unique structural and biochemical characteristics of HSPA2 that enable this heat shock protein to fulfil its prominent roles in orchestrating the morphological differentiation of male germ cells during spermatogenesis as well as their functional transformation during post-testicular sperm maturation.

摘要

在众多与生殖系统发育和功能调节相关的热休克蛋白(HSP)家族中,那些属于70 kDa HSP家族的蛋白已被证明对男性生育能力不可或缺。特别是,睾丸富集的热休克70 kDa蛋白2(HSPA2)在小鼠模型中已被证明对精子发生过程中生殖细胞分化的进展至关重要。在这个对发育至关重要的窗口期之后,越来越多的证据还表明HSPA2在人类精子细胞在女性生殖道上行过程中的功能转变中发挥作用。具体而言,HSPA2似乎协调了覆盖精子头部前部区域的特殊精子结构域的重塑,这与其在卵母细胞识别中的主要作用相适应。成熟精子中HSPA2蛋白水平与卵母细胞结合效率紧密相关,这一事实凸显了其作为男性生育能力强大预后生物标志物的效用。在本章中,我们将探讨HSPA2独特的结构和生化特征,正是这些特征使这种热休克蛋白能够在精子发生过程中协调男性生殖细胞的形态分化以及睾丸后精子成熟过程中的功能转变,从而发挥其重要作用。

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