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IQD家族的钙调蛋白结合蛋白将钙信号与微管、膜亚结构域和细胞核联系起来。

The IQD Family of Calmodulin-Binding Proteins Links Calcium Signaling to Microtubules, Membrane Subdomains, and the Nucleus.

作者信息

Bürstenbinder Katharina, Möller Birgit, Plötner Romina, Stamm Gina, Hause Gerd, Mitra Dipannita, Abel Steffen

机构信息

Department of Molecular Signal Processing, Leibniz Institute of Plant Biochemistry, 06120 Halle (Saale), Germany (K.B., R.P., G.S., D.M., S.A.);

Institute of Computer Science (B.M.), Biocenter (G.H.), and Institute of Biochemistry and Biotechnology (S.A.), Martin Luther University Halle-Wittenberg, 06120 Halle (Saale), Germany; and

出版信息

Plant Physiol. 2017 Mar;173(3):1692-1708. doi: 10.1104/pp.16.01743. Epub 2017 Jan 23.

Abstract

Calcium (Ca) signaling and dynamic reorganization of the cytoskeleton are essential processes for the coordination and control of plant cell shape and cell growth. Calmodulin (CaM) and closely related calmodulin-like (CML) polypeptides are principal sensors of Ca signals. CaM/CMLs decode and relay information encrypted by the second messenger via differential interactions with a wide spectrum of targets to modulate their diverse biochemical activities. The plant-specific IQ67 DOMAIN (IQD) family emerged as possibly the largest class of CaM-interacting proteins with undefined molecular functions and biological roles. Here, we show that the 33 members of the IQD family in Arabidopsis () differentially localize, using green fluorescent protein (GFP)-tagged proteins, to multiple and distinct subcellular sites, including microtubule (MT) arrays, plasma membrane subdomains, and nuclear compartments. Intriguingly, the various IQD-specific localization patterns coincide with the subcellular patterns of IQD-dependent recruitment of CaM, suggesting that the diverse IQD members sequester Ca-CaM signaling modules to specific subcellular sites for precise regulation of Ca-dependent processes. Because MT localization is a hallmark of most IQD family members, we quantitatively analyzed GFP-labeled MT arrays in cells transiently expressing GFP-IQD fusions and observed IQD-specific MT patterns, which point to a role of IQDs in MT organization and dynamics. Indeed, stable overexpression of select IQD proteins in Arabidopsis altered cellular MT orientation, cell shape, and organ morphology. Because IQDs share biochemical properties with scaffold proteins, we propose that IQD families provide an assortment of platform proteins for integrating CaM-dependent Ca signaling at multiple cellular sites to regulate cell function, shape, and growth.

摘要

钙(Ca)信号传导和细胞骨架的动态重组是协调和控制植物细胞形状及细胞生长的重要过程。钙调蛋白(CaM)和与之密切相关的类钙调蛋白(CML)多肽是Ca信号的主要传感器。CaM/CMLs通过与多种靶标的差异相互作用来解码和传递由第二信使加密的信息,从而调节其多样的生化活性。植物特有的IQ67结构域(IQD)家族可能是最大的一类与CaM相互作用的蛋白家族,其分子功能和生物学作用尚不明确。在此,我们利用绿色荧光蛋白(GFP)标记的蛋白,证明拟南芥中IQD家族的33个成员在多个不同的亚细胞位点存在差异定位,包括微管(MT)阵列、质膜亚结构域和核区室。有趣的是,各种IQD特异性定位模式与IQD依赖性招募CaM的亚细胞模式一致,这表明不同的IQD成员将Ca-CaM信号模块隔离到特定的亚细胞位点,以精确调节Ca依赖的过程。由于MT定位是大多数IQD家族成员的一个标志,我们定量分析了瞬时表达GFP-IQD融合蛋白的细胞中GFP标记的MT阵列,并观察到IQD特异性的MT模式,这表明IQD在MT组织和动态变化中发挥作用。事实上,在拟南芥中稳定过表达选定的IQD蛋白会改变细胞MT的方向、细胞形状和器官形态。由于IQD与支架蛋白具有共同的生化特性,我们提出IQD家族提供了一系列平台蛋白,用于在多个细胞位点整合CaM依赖的Ca信号传导,以调节细胞功能、形状和生长。

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