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钙调蛋白作为植物中一种多功能的钙信号转导蛋白。

Calmodulin as a versatile calcium signal transducer in plants.

作者信息

Snedden Wayne A, Fromm Hillel

机构信息

Department of Biology, Queen's University, Kingston, Ontario, K7L 3N6, Canada.

Centre for Plant Sciences, Leeds Institute for Biotechnology and Agriculture (LIBA), School of Biology, University of Leeds, Leeds LS2 9JT, UK.

出版信息

New Phytol. 2001 Jul;151(1):35-66. doi: 10.1046/j.1469-8137.2001.00154.x.

DOI:10.1046/j.1469-8137.2001.00154.x
PMID:33873389
Abstract

The complexity of Ca patterns observed in eukaryotic cells, including plants, has led to the hypothesis that specific patterns of Ca propagation, termed Ca signatures, encode information and relay it to downstream elements (effectors) for translation into appropriate cellular responses. Ca -binding proteins (sensors) play a key role in decoding Ca signatures and transducing signals by activating specific targets and pathways. Calmodulin is a Ca sensor known to modulate the activity of many mammalian proteins, whose targets in plants are now being actively characterized. Plants possess an interesting and rapidly growing list of calmodulin targets with a variety of cellular roles. Nevertheless, many targets appear to be unique to plants and remain uncharacterized, calling for a concerted effort to elucidate their functions. Moreover, the extended family of calmodulin-related proteins in plants consists of evolutionarily divergent members, mostly of unknown function, although some have recently been implicated in stress responses. It is hoped that advances in functional genomics, and the research tools it generates, will help to explain themultiplicity of calmodulin genes in plants, and to identify their downstream effectors. This review summarizes current knowledge of the Ca -calmodulin messenger system in plants and presents suggestions for future areas of research. Contents I. Introduction 36 II. CaM isoforms and CaM-like proteins 37 III. CaM-target proteins 42 IV. CaM and nuclear functions 46 V. Regulation of ion transport 49 VI. CaM and plant responses to environmental stimuli 52 VII. Conclusions and future studies 58 Acknowledgements 59 References 59.

摘要

在包括植物在内的真核细胞中观察到的钙模式的复杂性,引发了一种假说,即特定的钙传播模式(称为钙信号)编码信息,并将其传递给下游元件(效应器),以便转化为适当的细胞反应。钙结合蛋白(传感器)在解码钙信号和通过激活特定靶点及途径转导信号方面发挥着关键作用。钙调蛋白是一种已知能调节许多哺乳动物蛋白质活性的钙传感器,其在植物中的靶点目前正在积极研究中。植物拥有一系列有趣且数量迅速增加的钙调蛋白靶点,它们具有多种细胞功能。然而,许多靶点似乎是植物特有的,仍未得到表征,这需要共同努力来阐明它们的功能。此外,植物中与钙调蛋白相关的蛋白质大家族由进化上不同的成员组成,大多数功能未知,尽管最近一些成员被认为与应激反应有关。希望功能基因组学的进展及其产生的研究工具将有助于解释植物中钙调蛋白基因的多样性,并识别其下游效应器。本综述总结了目前关于植物中钙 - 钙调蛋白信使系统的知识,并提出了未来研究领域的建议。内容 一、引言36 二、钙调蛋白异构体和类钙调蛋白37 三、钙调蛋白靶向蛋白42 四、钙调蛋白与核功能46 五、离子转运的调节49 六、钙调蛋白与植物对环境刺激的反应52 七、结论与未来研究58 致谢59 参考文献59

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