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钙依赖蛋白激酶 CPK21 在拟南芥的非生物胁迫响应中发挥作用。

Calcium-dependent protein kinase CPK21 functions in abiotic stress response in Arabidopsis thaliana.

机构信息

Department of Plant Biochemistry, Institute for Biology, Freie Universität Berlin, Koenigin-Luise-Str. 12-16, 14195 Berlin, Germany.

出版信息

Mol Plant. 2011 Jan;4(1):83-96. doi: 10.1093/mp/ssq064. Epub 2010 Oct 26.

Abstract

Calcium-dependent protein kinases (CDPKs) comprise a family of plant serine/threonine protein kinases in which the calcium sensing domain and the kinase effector domain are combined within one molecule. So far, a biological function in abiotic stress signaling has only been reported for few CDPK isoforms, whereas the underlying biochemical mechanism for these CDPKs is still mainly unknown. Here, we show that CPK21 from Arabidopsis thaliana is biochemically activated in vivo in response to hyperosmotic stress. Loss-of-function seedlings of cpk21 are more tolerant to hyperosmotic stress and mutant plants show increased stress responses with respect to marker gene expression and metabolite accumulation. In transgenic Arabidopsis complementation lines in the cpk21 mutant background, in which either CPK21 wild-type, or a full-length enzyme variant carrying an amino-acid substitution were stably expressed, stress responsitivity was restored by CPK21 but not with the kinase inactive variant. The biochemical characterization of in planta synthesized and purified CPK21 protein revealed that within the calcium-binding domain, N-terminal EF1- and EF2-motifs compared to C-terminal EF3- and EF4-motifs differ in their contribution to calcium-regulated kinase activity, suggesting a crucial role for the N-terminal EF-hand pair. Our data provide evidence for CPK21 contributing in abiotic stress signaling and suggest that the N-terminal EF-hand pair is a calcium-sensing determinant controlling specificity of CPK21 function.

摘要

钙依赖蛋白激酶(CDPKs)是一类植物丝氨酸/苏氨酸蛋白激酶,其中钙感应结构域和激酶效应结构域结合在一个分子中。到目前为止,只有少数 CDPK 同工型被报道具有非生物胁迫信号转导的生物学功能,而这些 CDPK 的潜在生化机制仍主要未知。在这里,我们表明拟南芥中的 CPK21 在体内对高渗胁迫有生化激活作用。cpk21 功能丧失型幼苗对高渗胁迫更耐受,突变体植物在标记基因表达和代谢物积累方面表现出增强的应激反应。在 cpk21 突变体背景下的转基因拟南芥互补系中,稳定表达 CPK21 野生型或携带氨基酸取代的全长酶变体,可通过 CPK21 恢复应激反应性,但激酶失活变体则不能。对体内合成和纯化的 CPK21 蛋白的生化特性进行分析表明,在钙结合结构域中,与 C 末端 EF3 和 EF4 基序相比,N 末端 EF1 和 EF2 基序在钙调节激酶活性方面的贡献不同,这表明 N 末端 EF 手对在控制 CPK21 功能特异性方面具有重要作用。我们的数据为 CPK21 在非生物胁迫信号转导中的作用提供了证据,并表明 N 末端 EF 手对是控制 CPK21 功能特异性的钙感应决定因素。

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