首页> 外文期刊>Frontiers in Cell and Developmental Biology >Xenopus Oocyte As a Model System to Study Store-Operated Ca2+ Entry (SOCE)
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Xenopus Oocyte As a Model System to Study Store-Operated Ca2+ Entry (SOCE)

机译:爪蟾卵母细胞作为研究储运钙离子输入(SOCE)的模型系统

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摘要

Store-operated Ca2+ entry (SOCE) is a ubiquitous Ca2+ influx pathway at the cell membrane that is regulated by Ca2+ content in intracellular stores. SOCE is important for a multitude of physiological processes, including muscle development, T-cell activation and fertilization. Therefore understanding the molecular regulation of SOCE is imperative. SOCE activation requires conformational and spatial changes in proteins located in both the endoplasmic reticulum and plasma membrane. This leads to the generation of an ionic current of very small amplitude. Both biochemical and electrophysiological parameters of SOCE can be difficult to record in small mammalian cells. In this protocol we present the different methodologies that enable the study of SOCE in a unique model system, the frog oocyte, which provides several advantages and have contributed significantly to our understanding of SOCE regulation.
机译:商店操作的Ca2 +进入(SOCE)是细胞膜上普遍存在的Ca2 +流入途径,受细胞内商店中Ca2 +含量的调节。 SOCE对于许多生理过程都很重要,包括肌肉发育,T细胞活化和受精。因此,了解SOCE的分子调控势在必行。 SOCE激活需要在内质网和质膜中的蛋白质发生构象和空间变化。这导致产生非常小的振幅的离子电流。在小型哺乳动物细胞中,SOCE的生化和电生理参数都难以记录。在此协议中,我们介绍了使青蛙能够在独特的模型系统中研究SOCE的不同方法,青蛙卵母细胞具有多个优点,并为我们对SOCE调控的理解做出了重要贡献。

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