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黄瓜中两种P1B2 - ATP酶CsHMA3和CsHMA4的分子及生化特性

Molecular and biochemical properties of two P1B2-ATPases, CsHMA3 and CsHMA4, from cucumber.

作者信息

Migocka Magdalena, Papierniak Anna, Maciaszczyk-Dziubinska Ewa, Posyniak Ewelina, Kosieradzka Anna

机构信息

Department of Plant Molecular Physiology, Institute of Experimental Biology, University of Wroclaw Kanonia 6/8, Wroclaw, 50-328, Poland.

出版信息

Plant Cell Environ. 2015 Jun;38(6):1127-41. doi: 10.1111/pce.12447. Epub 2014 Oct 27.

Abstract

P1B-ATPases (heavy metal ATPases, HMAs) constitute a multigenic subfamily of P-ATPases involved in the transport of monovalent and divalent heavy metals in plant cells. Here, we present the organization of genes encoding the HMA family in the cucumber genome and report the function and biochemical properties of two cucumber proteins homologous to the HMA2-4-like plant HMAs. Eight genes encoding putative P1B -ATPases were identified in the cucumber genome. Among them, CsHMA3 was predominantly expressed in roots and up-regulated by Pb, Zn and Cd excess, whereas the CsHMA4 transcript was most abundant in roots and flowers of cucumber plants, and elevated under Pb and Zn excess. Expression of CsHMA3 in Saccharomyces cerevisiae enhanced yeast tolerance to Cd and Pb, whereas CsHMA4 conferred increased resistance of yeast cells to Cd and Zn. Immunostaining with specific antibodies raised against cucumber proteins revealed tonoplast localization of CsHMA3 and plasma membrane localization of CsHMA4 in cucumber root cells. Kinetic studies of CsHMA3 and CsHMA4 in yeast membranes indicated differing heavy metal cation affinities of these two proteins. Altogether, the results suggest an important role of CsHMA3 and CsHMA4 in Cd and Pb detoxification and Zn homeostasis in cucumber cells.

摘要

P1B型ATP酶(重金属ATP酶,HMAs)构成了P-ATP酶的一个多基因亚家族,参与植物细胞中单价和二价重金属的运输。在此,我们展示了黄瓜基因组中编码HMA家族的基因组织,并报告了两种与HMA2 - 4类植物HMAs同源的黄瓜蛋白的功能和生化特性。在黄瓜基因组中鉴定出八个编码假定P1B型ATP酶的基因。其中,CsHMA3主要在根中表达,并且在铅、锌和镉过量时上调,而CsHMA4转录本在黄瓜植株的根和花中最为丰富,在铅和锌过量时升高。CsHMA3在酿酒酵母中的表达增强了酵母对镉和铅的耐受性,而CsHMA4使酵母细胞对镉和锌的抗性增加。用针对黄瓜蛋白产生的特异性抗体进行免疫染色显示,CsHMA3定位于黄瓜根细胞的液泡膜,CsHMA4定位于质膜。对酵母膜中CsHMA3和CsHMA4的动力学研究表明这两种蛋白对重金属阳离子的亲和力不同。总之,结果表明CsHMA3和CsHMA4在黄瓜细胞中镉和铅的解毒以及锌的稳态中起重要作用。

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