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植物发育中的受体激酶信号传导。

Receptor kinase signaling in plant development.

作者信息

Becraft Philip W

机构信息

Zoology and Genetics and Agronomy Departments, Iowa State University, Ames 50011, USA.

出版信息

Annu Rev Cell Dev Biol. 2002;18:163-92. doi: 10.1146/annurev.cellbio.18.012502.083431. Epub 2002 Apr 2.

Abstract

The Arabidopsis genome sequence has revealed that plants contain a much larger complement of receptor kinase genes than other organisms. Early analysis of these genes revealed involvement in a diverse array of developmental and defense functions that included gametophyte development, pollen-pistil interactions, shoot apical meristem equilibrium, hormone perception, and cell morphogenesis. Amino acid sequence motifs and binding studies indicate that the ectodomains are capable of binding, either directly or indirectly, various classes of molecules including proteins, carbohydrates, and steroids. Genetic and biochemical approaches have begun to identify other components of several signal transduction pathways. Some receptor-like kinases (RLKs) appear to function with coreceptors lacking kinase domains, and genome analysis suggests this might be true for many RLKs. The KAPP protein phosphatase functions as a negative regulator of at least two RLK systems, and in vitro studies suggest it could be a common component of more. Whether plant signaling systems display a modularity similar to animal systems remains to be determined. Future efforts will reveal unknown functions of other RLKs and elucidate the relationships among their signaling networks.

摘要

拟南芥基因组序列显示,植物所含受体激酶基因的数量比其他生物多得多。对这些基因的早期分析表明,它们参与了一系列不同的发育和防御功能,包括配子体发育、花粉与雌蕊相互作用、茎尖分生组织平衡、激素感知以及细胞形态发生。氨基酸序列基序和结合研究表明,胞外结构域能够直接或间接地结合包括蛋白质、碳水化合物和类固醇在内的各类分子。遗传学和生物化学方法已开始鉴定几种信号转导途径的其他组分。一些类受体激酶(RLK)似乎与缺乏激酶结构域的共受体一起发挥作用,基因组分析表明许多RLK可能都是如此。KAPP蛋白磷酸酶作为至少两个RLK系统的负调控因子发挥作用,体外研究表明它可能是更多系统的共同组分。植物信号系统是否表现出与动物系统类似的模块化仍有待确定。未来的研究将揭示其他RLK的未知功能,并阐明它们信号网络之间的关系。

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