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首页> 外文期刊>Plant signaling & behavior >Functions of IQD proteins as hubs in cellular calcium and auxin signaling: A toolbox for shape formation and tissue-specification in plants?
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Functions of IQD proteins as hubs in cellular calcium and auxin signaling: A toolbox for shape formation and tissue-specification in plants?

机译:IQD蛋白作为细胞钙和养肝信号传导中的枢纽的功能:用于植物形状形成和组织规范的工具箱?

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Calcium (Ca~(2+)) ions play pivotal roles as second messengers in intracellular signal transduction, and coordinate many biological processes. Changes in intracellular Ca~(2+) levels are perceived by Ca~(2+) sensors such as calmodulin (CaM) and CaM-like (CML) proteins, which transduce Ca~(2+) signals into cellular responses by regulation of diverse target proteins. Insights into molecular functions of CaM targets are thus essential to understand the molecular and cellular basis of Ca~(2+) signaling.During the last decade, IQ67-domain (IQD) proteins emerged as the largest class of CaM targets in plants with mostly unknown functions. In the March issue of Plant Physiology, we presented the first comprehensive characterization of the 33-membered IQD family in Arabidopsis thaliana. We showed, by analysis of the subcellular localization of translational green fluorescent protein (GFP) fusion proteins, that most IQD members label microtubules (MTs), and additionally often localize to the cell nucleus orto membranes, where they recruit CaM Ca~(2+) sensors. Important functions at MTs are supported by altered MT organization and plant growth in IQD gain-of-function lines. Because IQD proteins share structural hallmarks of scaffold proteins, we propose roles of IQDs in the assembly of macromolecular complexes to orchestrate Ca~(2+) CaM signaling from membranes to the nucleus. Interestingly, expression of several IQDs is regulated by auxin, which suggests functions of IQDs as hubs in cellular auxin and calcium signaling to regulate plant growth and development.
机译:钙离子作为细胞内信号转导的第二信使,在许多生物学过程中起着关键作用。钙调素(CaM)和钙调素样蛋白(CML)等钙离子传感器可感知细胞内钙离子水平的变化,通过调节不同的靶蛋白将钙离子信号转换为细胞反应。因此,深入了解钙调素靶点的分子功能对于理解钙信号传导的分子和细胞基础至关重要。在过去十年中,IQ67结构域(IQD)蛋白成为植物中最大的CaM靶标,其功能大多未知。在三月份的《植物生理学》杂志上,我们首次全面描述了拟南芥中33个IQD家族成员。通过分析翻译绿色荧光蛋白(GFP)融合蛋白的亚细胞定位,我们发现大多数IQD成员标记微管(MTs),并且通常定位于细胞核或细胞膜,在那里他们招募CaM Ca~(2+)传感器。MTs的重要功能由改变的MT组织和功能线IQD增益中的植物生长提供支持。由于IQD蛋白具有支架蛋白的结构特征,我们提出IQD在大分子复合物组装中的作用,以协调从膜到核的Ca~(2+)CaM信号。有趣的是,一些IQD的表达受到生长素的调控,这表明IQD在细胞生长素和钙信号传导中起着枢纽作用,从而调节植物的生长和发育。

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