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What Is the Core Oscillator in the Speract-Activated Pathway of the Strongylocentrotus purpuratus Sperm Flagellum?

机译:紫圆线虫紫精子鞭毛的精子激活途径中的核心振荡器是什么?

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摘要

Sperm chemotaxis has an important role in fertilization. Most of our knowledge regarding this phenomenon comes from studies in organisms whose fertilization occurs externally, like sea urchins. Sea urchin spermatozoa respond to sperm-activating peptides, which diffuse from the egg jelly coat and interact with their receptor in the flagellum, triggering several physiological responses: changes in membrane potential, intracellular pH, cyclic nucleotide levels, and intracellular Ca2+ concentration ([Ca2+]). In particular, flagellar [Ca2+] has been shown to oscillate. These [Ca2+] oscillations are correlated with changes in the flagellar shape and so with the regulation of the sperm swimming paths. In this study, we demonstrate, from a mathematical modeling perspective, that the reported speract-activated signaling pathway in Strongylocentrotus purpuratus (speract being a sperm-activating peptide specific to this species) has the necessary elements to replicate the reported [Ca2+] oscillations. We further investigate which elements of this signaling pathway constitute the core oscillator.
机译:精子趋化作用在受精中起重要作用。我们对这种现象的大多数了解来自对受精发生在外部的生物(如海胆)的研究。海胆精子对精子激活肽有反应,该蛋白从蛋冻皮中扩散并与鞭毛中的受体相互作用,从而引发多种生理反应:膜电位,细胞内pH,环核苷酸水平和细胞内Ca 2的变化。 + 浓度([Ca 2 + ])。特别地,鞭毛[Ca 2 + ]已显示出振荡。这些[Ca 2 + ]振荡与鞭毛形状的变化以及精子游动路径的调节相关。在这项研究中,我们从数学建模的角度证明,报道的紫红色支线轮虫的精子激活信号通路(精子是特定于该物种的精子激活肽)具有复制所报道的[Ca 2 + ]振荡。我们进一步调查该信号通路的哪些元素构成核心振荡器。

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