Laboratorio de Fusión de Membranas y Exocitosis Acrosomal, Instituto de Histología y Embriología Dr. Mario H. Burgos (IHEM) Universidad Nacional de Cuyo, CONICET, Mendoza, Argentina.
Departamento de Genética del Desarrollo y Fisiología Molecular, Instituto de Biotecnología (IBT), Universidad Nacional Autónoma de México (UNAM), Cuernavaca, Morelos, Mexico.
Biosystems. 2021 Nov;209:104524. doi: 10.1016/j.biosystems.2021.104524. Epub 2021 Aug 26.
Intracellular Ca is a key regulator of cell signaling and sperm are not the exception. Cells often use cytoplasmic Ca concentration ([Ca]) oscillations as a means to decodify external and internal information. [Ca] oscillations faster than those usually found in other cells and correlated with flagellar beat were the first to be described in sperm in 1993 by Susan Suarez, in the boar. More than 20 years passed before similar [Ca] oscillations were documented in human sperm, simultaneously examining their flagellar beat in three dimensions by Corkidi et al. 2017. On the other hand, 10 years after the discovery of the fast boar [Ca] oscillations, slower ones triggered by compounds from the egg external envelope were found to regulate cell motility and chemotaxis in sperm from marine organisms. Today it is known that sperm display fast and slow spontaneous and agonist triggered [Ca] oscillations. In mammalian sperm these Ca transients may act like a multifaceted tool that regulates fundamental functions such as motility and acrosome reaction. This review covers the main sperm species and experimental conditions where [Ca] oscillations have been described and discusses what is known about the transporters involved, their regulation and the physiological purpose of these oscillations. There is a lot to be learned regarding the origin, regulation and physiological relevance of these Ca oscillations.
细胞内钙是细胞信号转导的关键调节剂,精子也不例外。细胞通常使用细胞质钙浓度 ([Ca]) 振荡作为解码外部和内部信息的一种手段。1993 年,Susan Suarez 在公猪中首次描述了精子中比其他细胞中通常发现的更快的 [Ca] 振荡,并且与鞭毛拍动相关。在 Corkidi 等人同时在三维空间中检查人类精子的鞭毛拍动之前,又过了 20 多年才在人类精子中记录到类似的 [Ca] 振荡。另一方面,在发现快速公猪 [Ca] 振荡 10 年后,人们发现由卵外被膜中的化合物触发的较慢的 [Ca] 振荡调节海洋生物精子的细胞运动和趋化性。如今,人们已经知道精子会显示自发和激动剂触发的快速和慢速 [Ca] 振荡。在哺乳动物精子中,这些钙瞬变可能像一种多方面的工具,调节运动和顶体反应等基本功能。这篇综述涵盖了描述 [Ca] 振荡的主要精子物种和实验条件,并讨论了已知的涉及的转运蛋白、它们的调节以及这些振荡的生理目的。关于这些 Ca 振荡的起源、调节和生理相关性,还有很多需要学习。