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盐诱导的亚细胞激酶重新定位以及由拟南芥中过表达的苜蓿SIMKK导致的幼苗易感性。

Salt-induced subcellular kinase relocation and seedling susceptibility caused by overexpression of Medicago SIMKK in Arabidopsis.

作者信息

Ovečka Miroslav, Takáč Tomáš, Komis George, Vadovič Pavol, Bekešová Slávka, Doskočilová Anna, Šamajová Veronika, Luptovčiak Ivan, Samajová Olga, Schweighofer Alois, Meskiene Irute, Jonak Claudia, Křenek Pavel, Lichtscheidl Irene, Škultéty L'udovít, Hirt Heribert, Šamaj Jozef

机构信息

Centre of the Region Haná for Biotechnological and Agricultural Research, Department of Cell Biology, Faculty of Science, Palacký University, Šlechtitelů 11, 783 71 Olomouc, Czech Republic.

Max F. Perutz Laboratories, Vienna Biocenter, University of Vienna, Dr Bohr-Gasse 9, A-1030 Vienna, Austria.

出版信息

J Exp Bot. 2014 Jun;65(9):2335-50. doi: 10.1093/jxb/eru115. Epub 2014 Mar 19.

Abstract

Dual-specificity mitogen-activated protein kinases kinases (MAPKKs) are the immediate upstream activators of MAPKs. They simultaneously phosphorylate the TXY motif within the activation loop of MAPKs, allowing them to interact with and regulate multiple substrates. Often, the activation of MAPKs triggers their nuclear translocation. However, the spatiotemporal dynamics and the physiological consequences of the activation of MAPKs, particularly in plants, are still poorly understood. Here, we studied the activation and localization of the Medicago sativa stress-induced MAPKK (SIMKK)-SIMK module after salt stress. In the inactive state, SIMKK and SIMK co-localized in the cytoplasm and in the nucleus. Upon salt stress, however, a substantial part of the nuclear pool of both SIMKK and SIMK relocated to cytoplasmic compartments. The course of nucleocytoplasmic shuttling of SIMK correlated temporally with the dual phosphorylation of the pTEpY motif. SIMKK function was further studied in Arabidopsis plants overexpressing SIMKK-yellow fluorescent protein (YFP) fusions. SIMKK-YFP plants showed enhanced activation of Arabidopsis MPK3 and MPK6 kinases upon salt treatment and exhibited high sensitivity against salt stress at the seedling stage, although they were salt insensitive during seed germination. Proteomic analysis of SIMKK-YFP overexpressors indicated the differential regulation of proteins directly or indirectly involved in salt stress responses. These proteins included catalase, peroxiredoxin, glutathione S-transferase, nucleoside diphosphate kinase 1, endoplasmic reticulum luminal-binding protein 2, and finally plasma membrane aquaporins. In conclusion, Arabidopsis seedlings overexpressing SIMKK-YFP exhibited higher salt sensitivity consistent with their proteome composition and with the presumptive MPK3/MPK6 hijacking of the salt response pathway.

摘要

双特异性丝裂原活化蛋白激酶激酶(MAPKKs)是MAPKs的直接上游激活因子。它们同时磷酸化MAPKs激活环内的TXY基序,使其能够与多种底物相互作用并进行调节。通常,MAPKs的激活会触发其核转位。然而,MAPKs激活的时空动态及其生理后果,尤其是在植物中,仍知之甚少。在此,我们研究了盐胁迫后紫花苜蓿胁迫诱导的MAPKK(SIMKK)-SIMK模块的激活和定位。在非活性状态下,SIMKK和SIMK共定位于细胞质和细胞核中。然而,在盐胁迫下,SIMKK和SIMK的核池中有很大一部分重新定位到细胞质区室。SIMK的核质穿梭过程在时间上与pTEpY基序的双磷酸化相关。在过表达SIMKK-黄色荧光蛋白(YFP)融合体的拟南芥植株中进一步研究了SIMKK的功能。盐处理后,SIMKK-YFP植株中拟南芥MPK3和MPK6激酶的激活增强,在幼苗期对盐胁迫表现出高敏感性,尽管它们在种子萌发期间对盐不敏感。对SIMKK-YFP过表达植株的蛋白质组分析表明,直接或间接参与盐胁迫反应的蛋白质受到差异调节。这些蛋白质包括过氧化氢酶、过氧化物酶、谷胱甘肽S-转移酶、核苷二磷酸激酶1、内质网腔结合蛋白2,以及质膜水通道蛋白。总之,过表达SIMKK-YFP的拟南芥幼苗表现出更高的盐敏感性,这与其蛋白质组组成以及盐反应途径中假定的MPK3/MPK6劫持一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4df/4036504/a2787bebf123/exbotj_eru115_f0001.jpg

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