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Annexin-Mediated Calcium Signalling in Plants

机译:膜联蛋白介导的植物钙信号传导

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Calcium-permeable channels underpin elevations of free calcium that encode specific signals in stress adaptation, development and immunity. Identifying the genes encoding these channels remains a central goal of plant signalling research. Evidence now suggests that members of the plant annexin family function as unconventional calcium-permeable channels, with roles in development and stress signalling. Arabidopsis annexin 1 mediates a plasma membrane calcium-permeable conductance in roots that is activated by reactive oxygen species. Recombinant annexin 1 forms a very similar conductance in planar lipid bilayers, indicating that this protein could facilitate the in vivo conductance directly. The annexin 1 mutant is impaired in salinity-induced calcium signalling. Protein–protein interactions, post-translational modification and dynamic association with membranes could all influence annexin-mediated calcium signalling and are reviewed here. The prospect of annexins playing roles in calcium signalling events in symbiosis and immunity are considered.
机译:钙可渗透通道支持游离钙的升高,这些游离钙可编码应激适应,发育和免疫力中的特定信号。鉴定编码这些通道的基因仍然是植物信号研究的中心目标。现在的证据表明,植物膜联蛋白家族的成员具有非常规的钙可渗透通道的功能,在发育和胁迫信号中发挥作用。拟南芥的膜联蛋白1介导了被活性氧激活的质膜的钙渗透性传导。重组膜联蛋白1在平面脂质双层中形成非常相似的电导,表明该蛋白可以直接促进体内电导。 Annexin 1突变体在盐度诱导的钙信号传导中受损。蛋白质之间的相互作用,翻译后修饰以及与膜的动态结合都可能影响膜联蛋白介导的钙信号传导,在此进行综述。膜联蛋白在共生和免疫的钙信号事件中发挥作用的前景已被考虑。

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