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精子因子与卵子激活:精子 PLCZ1 的结构与功能关系。

SPERM FACTORS AND EGG ACTIVATION: The structure and function relationship of sperm PLCZ1.

机构信息

College of Medicine, QU Health, Qatar University, Doha, Qatar.

School of Biosciences, Cardiff University, Cardiff, UK.

出版信息

Reproduction. 2022 May 23;164(1):F1-F8. doi: 10.1530/REP-21-0477.

Abstract

In 2002, sperm-specific phospholipase C zeta1 (PLCZ1) was discovered and through these 20 years, it has been established as the predominant sperm oocyte-activating factor. PLCZ1 cRNA expression or direct protein microinjection into mammalian oocytes triggers calcium (Ca2+) oscillations indistinguishable from those observed at fertilization. The imperative role of PLCZ1 in oocyte activation is revealed by the vast number of human mutations throughout the PLCZ1 gene that have been identified and directly linked with certain forms of male infertility due to oocyte activation deficiency. PLCZ1 is the smallest PLC in size, comprising four N-terminal EF-hand domains, followed by X and Y catalytic domains, which are separated by the XY-linker, and ending with a C-terminal C2 domain. The EF hands are responsible for the high Ca2+ sensitivity of PLCZ1. The X and Y catalytic domains are responsible for the catalysis of the phosphatidylinositol-4,5-bisphosphate [PI(4,5)P2] substrate to produce the Ca2+-mobilising messenger, inositol 1,4,5-trisphosphate (IP3), while the XY-linker plays multiple roles in the unique mode of PLCZ1 action. Finally, the C2 domain has been proposed to facilitate the anchoring of PLCZ1 to intracellular vesicles through its direct interactions with specific phosphoinositides. This review discusses recent advances in the structure and function relationship of PLCZ1 and the potential binding partners of this important sperm-specific protein in the sperm and oocyte. The unravelling of all the remaining hidden secrets of sperm PLCZ1 should help us to understand the precise mechanism of fertilization, as well as enabling the diagnosis and treatment of currently unknown forms of PLCZ1 -linked human infertility.

摘要

2002 年,发现了精子特异性磷酯酶 C ζ1(PLCZ1),经过这 20 年,它已被确立为主要的精子-卵母细胞激活因子。PLCZ1 的 cRNA 表达或直接将蛋白微注射到哺乳动物卵母细胞中,会触发类似于受精时观察到的钙(Ca2+)振荡。PLCZ1 在卵母细胞激活中的重要作用,通过大量在 PLCZ1 基因中发现的人类突变得到证实,这些突变直接与某些形式的由于卵母细胞激活缺陷导致的男性不育症有关。PLCZ1 是 PLC 家族中最小的一种,由四个 N 端 EF 手结构域组成,其后是 X 和 Y 催化结构域,它们由 XY 连接子分隔,最后是 C 端 C2 结构域。EF 手负责 PLCZ1 的高 Ca2+敏感性。X 和 Y 催化结构域负责催化磷脂酰肌醇-4,5-二磷酸 [PI(4,5)P2] 底物产生 Ca2+动员信使,肌醇 1,4,5-三磷酸(IP3),而 XY 连接子在 PLCZ1 独特的作用模式中发挥多种作用。最后,C2 结构域通过与特定的磷酸肌醇直接相互作用,被提议有助于将 PLCZ1 锚定到细胞内囊泡上。本综述讨论了 PLCZ1 的结构和功能关系的最新进展,以及该重要的精子特异性蛋白在精子和卵母细胞中的潜在结合伴侣。揭示 PLCZ1 所有剩余的隐藏秘密,应该有助于我们理解受精的确切机制,并能够诊断和治疗目前未知形式的 PLCZ1 相关人类不育症。

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