Llanos M N
Departamento de Ciencias Médico-Biológicas y Básicas, Facultad de Medicina-División Sur y División de Ciencias Básicas, INTA, Universidad de Chile, Santiago.
Arch Biol Med Exp. 1989 Apr;22(1):25-36.
Mammalian sperm capacitation and the acrosome reaction (AR) are essential prerequisites for fertilization. This report examines part of the molecular events developed during capacitation and the AR of mammalian spermatozoa; especially those events related to sperm head membrane bound enzymes and phospholipids. For this purpose, it has been analysed results obtained from an in vitro capacitation/acrosome reaction inducing system for golden hamster spermatozoa. First of all, the analysis is focused in the phospholipid transmethylation reactions possibly occurring at plasma membrane level during capacitation and the AR; it is suggested too, that this pathway could provide the substrate for a sperm head membrane bound phospholipase A2 which is able to produce a lysophospholipid (a fusogen) and fatty acids; both of them, very likely involved in the late steps of the AR. These assumptions are confirmed by experiments demonstrating that exogenous lysophospholipids and/or cis-unsaturated fatty acids are able to accelerate AR in previously capacitated spermatozoa. It is also suggested future research in this field, which could involve a sperm phospholipase C specific for phosphatydil-inositol, 4.5 bisphosphate; its products, Inositol trisphosphate and diacylglycerol could act as second messengers with a probable physiological function during capacitation. Finally, an integrative mechanism for the AR-involving phospholipid methylation, acrosin activation, phospholipase A2 activation and endogenous lysophospholipids and fatty acids production is proposed as a model for discussion.
哺乳动物精子获能和顶体反应(AR)是受精的必要前提条件。本报告研究了哺乳动物精子获能和顶体反应过程中发生的部分分子事件;特别是那些与精子头部膜结合酶和磷脂相关的事件。为此,分析了从金黄仓鼠精子体外获能/顶体反应诱导系统获得的结果。首先,分析聚焦于获能和顶体反应过程中可能发生在质膜水平的磷脂转甲基化反应;还提出,该途径可为一种精子头部膜结合磷脂酶A2提供底物,该酶能够产生溶血磷脂(一种融合剂)和脂肪酸;它们很可能都参与顶体反应的后期步骤。这些假设通过实验得到证实,实验表明外源性溶血磷脂和/或顺式不饱和脂肪酸能够加速已获能精子的顶体反应。还提出了该领域未来的研究方向,可能涉及一种对磷脂酰肌醇4,5 - 二磷酸具有特异性的精子磷脂酶C;其产物肌醇三磷酸和二酰基甘油可能作为第二信使,在获能过程中具有可能的生理功能。最后,提出了一种涉及磷脂甲基化、顶体蛋白酶激活、磷脂酶A2激活以及内源性溶血磷脂和脂肪酸产生的顶体反应综合机制作为讨论模型。