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Mobilisation of stored calcium in the neck region of human sperm – a mechanism for regulation of flagellar activity

机译:动员人类精子颈部储存的钙–一种调节鞭毛活性的机制

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Calcium signalling plays a pivotal role in sperm physiology, being intimately involved in the regulation of acrosome reaction, chemotaxis and hyperactivation. Here we describe briefly the mechanisms of calcium regulation in somatic cells and the ways in which these mechanisms have been adapted to function in mature spermatozoa. We then consider recent data from this and other laboratories on the responses of sperm to three compounds: progesterone and nitric oxide (both products of the cumulus oophorus) and 4-aminopyridine. All of these compounds induce calcium signals in the posterior sperm head and neck region and, when applied at appropriate concentrations, modify flagellar activity, causing asymmetric bending of the proximal flagellum. We argue that these effects reflect a common mode of action, mobilisation of calcium stored in the sperm neck region. Finally we consider the nature of calcium signalling pathways in sperm. We suggest that this highly specialised and extremely polarised cell, though working with the same calcium signalling ‘tools’ as those of somatic cells, employs them to generate unusually ‘hard-wired’ calcium signals that do not act to integrate stimuli. ‘Leakage’ between these calcium signalling pathways will generate inappropriate responses, compromising functioning of the cell.
机译:钙信号传导在精子生理中起关键作用,与顶体反应,趋化性和过度活化的调节密切相关。在这里,我们简要描述了钙在体细胞中调节的机制,以及这些机制已适应在成熟精子中起作用的方式。然后,我们考虑来自该实验室和其他实验室的最新数据,这些数据涉及精子对三种化合物的反应:孕酮和一氧化氮(均为积卵的产物)和4-氨基吡啶。所有这些化合物都会在精子后部和颈部区域诱导钙信号,并以适当的浓度施用时会改变鞭毛活性,导致近端鞭毛不对称弯曲。我们认为这些作用反映了一种常见的作用方式,即动员储存在精子颈部的钙。最后,我们考虑精子中钙信号通路的性质。我们建议,尽管这种高度专业化和极极化的细胞虽然与体细胞使用相同的钙信号“工具”,但仍可利用它们产生异常“硬线连接”的钙信号,这些信号不会起到整合刺激作用。这些钙信号传导途径之间的“泄漏”将产生不适当的反应,从而损害细胞的功能。

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