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Vertically- and horizontally-transmitted memories – the fading boundaries between regeneration and inheritance in planaria

机译:垂直和水平传输的记忆–平面虫再生与遗传之间的渐弱界限

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Several focal adhesion proteins are known to cooperate with integrins to link the extracellular matrix to the actin cytoskeleton; as a result, many intracellular signaling pathways are activated and several focal adhesion complexes are formed. However, how these proteins function in mammalian spermatozoa remains unknown. We confirm the presence of focal adhesion proteins in guinea pig spermatozoa, and we explore their role during capacitation and the acrosome reaction, and their relationship with the actin cytoskeleton. Our results suggest the presence of a focal adhesion complex formed by β1-integrin, focal adhesion kinase (FAK), paxillin, vinculin, talin, and α-actinin in the acrosomal region. Inhibition of FAK during capacitation affected the protein tyrosine phosphorylation associated with capacitation that occurs within the first few minutes of capacitation, which caused the acrosome reaction to become increasingly Ca2+?dependent and inhibited the polymerization of actin. The integration of vinculin and talin into the complex, and the activation of FAK and paxillin during capacitation, suggests that the complex assembles at this time. We identify that vinculin and α-actinin increase their interaction with F-actin while it remodels during capacitation, and that during capacitation focal adhesion complexes are structured. FAK contributes to acrosome integrity, likely by regulating the polymerization and the remodeling of the actin cytoskeleton.
机译:已知有几种粘着斑蛋白可与整合素协同作用,将细胞外基质与肌动蛋白的细胞骨架相连。结果,许多细胞内信号通路被激活,并形成了几种粘着斑复合物。但是,这些蛋白质如何在哺乳动物的精子中起作用尚不清楚。我们确认了豚鼠精子中粘着斑蛋白的存在,并探讨了它们在获能和顶体反应中的作用,以及它们与肌动蛋白细胞骨架的关系。我们的结果表明,在顶体区域中存在由β1-整联蛋白,粘着斑激酶(FAK),paxillin,vincinin,talin和α-actinin形成的粘着斑复合物。捕获过程中对FAK的抑制会影响与捕获相关的蛋白质酪氨酸磷酸化,该过程发生在捕获的最初几分钟内,这导致顶体反应变得越来越依赖Ca2 + ?,并抑制了肌动蛋白的聚合。新蛋白和塔林蛋白整合到复合物中,以及在获能过程中FAK和paxillin的活化表明复合物在此时组装。我们发现长春花素和α-肌动蛋白在捕获过程中重塑时增加了与F-肌动蛋白的相互作用,并且在捕获过程中局部黏附复合物得以构建。 FAK可能通过调节肌动蛋白细胞骨架的聚合和重塑而有助于顶体完整性。

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