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Analysis of Puff Dynamics in Oocytes: Interdependence of Puff Amplitude and Interpuff Interval

机译:卵母细胞中的粉扑动力学分析:粉扑振幅和粉扑间隔的相互关系

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摘要

Puffs are localized Ca2+ signals that arise in oocytes in response to inositol 1,4,5-trisphosphate (IP3). They are analogous to the sparks of myocytes and are believed to be the result of the liberation of Ca2+ from the endoplasmic reticulum through the coordinated opening of IP3 receptor/channels clustered at a functional release site. In this article, we analyze sequences of puffs that occur at the same site to help elucidate the mechanisms underlying puff dynamics. In particular, we show a dependence of the interpuff time on the amplitude of the preceding puff, and of the amplitude of the following puff on the preceding interval. These relationships can be accounted for by an inhibitory role of the Ca2+ that is liberated during puffs. We construct a stochastic model for a cluster of IP3 receptor/channels that quantitatively replicates the observed behavior, and we determine that the characteristic time for a channel to escape from the inhibitory state is of the order of seconds.
机译:抽吸是在卵母细胞中响应肌醇1,4,5-三磷酸(IP3)出现的局部Ca 2 + 信号。它们类似于心肌细胞的火花,被认为是通过聚集在功能性释放位点的IP3受体/通道的协调开放从内质网释放Ca 2 + 的结果。在本文中,我们分析了发生在同一部位的粉扑序列,以帮助阐明粉扑动力学的潜在机制。特别地,我们显示出抽吸时间与前一抽吸的幅度的相关性,以及后一抽吸的幅度与在前间隔的相关性。这些关系可以通过在抽吸过程中释放的Ca 2 + 的抑制作用来解释。我们为IP3受体/通道簇构建了一个随机模型,该模型定量地复制了观察到的行为,并且我们确定了通道从抑制状态逃逸的特征时间约为秒。

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