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两种金属耐受性蛋白,即MTP1和MTP4,参与黄瓜细胞中的锌稳态和镉隔离。

Two metal-tolerance proteins, MTP1 and MTP4, are involved in Zn homeostasis and Cd sequestration in cucumber cells.

作者信息

Migocka Magdalena, Kosieradzka Anna, Papierniak Anna, Maciaszczyk-Dziubinska Ewa, Posyniak Ewelina, Garbiec Arnold, Filleur Sophie

机构信息

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

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

出版信息

J Exp Bot. 2015 Feb;66(3):1001-15. doi: 10.1093/jxb/eru459. Epub 2014 Nov 24.

Abstract

Metal-tolerance proteins (MTPs) are divalent cation transporters that have been shown to be essential for metal homeostasis and tolerance in model plants and hyperaccumulators. Due to the lack of genomic resources, studies on MTPs in cultivated crops are lacking. Here, we present the first functional characterization of genes encoding cucumber proteins homologous to MTP1 and MTP4 transporters. CsMTP1 expression was ubiquitous in cucumber plants, whereas CsMTP4 mRNA was less abundant and was not detected in the generative parts of the flowers. When expressed in yeast, CsMTP1 and CsMTP4 were able to complement the hypersensitivity of mutant strains to Zn and Cd through the increased sequestration of metals within vacuoles using the transmembrane electrochemical gradient. Both proteins formed oligomers at the vacuolar membranes of yeast and cucumber cells and localized in Arabidopsis protoplasts, consistent with their function in vacuolar Zn and Cd sequestration. Changes in the abundance of CsMTP1 and CsMTP4 transcripts and proteins in response to elevated Zn and Cd, or to Zn deprivation, suggested metal-induced transcriptional, translational, and post-translational modifications of protein activities. The differences in the organ expression and affinity of both proteins to Zn and Cd suggested that CsMTP1 and CsMTP4 may not be functionally redundant in cucumber cells.

摘要

金属耐受性蛋白(MTPs)是二价阳离子转运蛋白,已被证明对模式植物和超积累植物中的金属稳态和耐受性至关重要。由于缺乏基因组资源,对栽培作物中MTPs的研究较少。在此,我们首次对编码与MTP1和MTP4转运蛋白同源的黄瓜蛋白的基因进行了功能表征。CsMTP1在黄瓜植株中普遍表达,而CsMTP4 mRNA丰度较低,在花的生殖部位未检测到。当在酵母中表达时,CsMTP1和CsMTP4能够通过利用跨膜电化学梯度增加液泡内金属的螯合作用,来弥补突变菌株对锌和镉的超敏感性。这两种蛋白在酵母和黄瓜细胞的液泡膜上形成寡聚体,并定位于拟南芥原生质体中,这与其在液泡锌和镉螯合中的功能一致。响应锌和镉含量升高或锌缺乏时,CsMTP1和CsMTP4转录本和蛋白丰度的变化表明,金属诱导了蛋白质活性的转录、翻译和翻译后修饰。这两种蛋白在器官表达以及对锌和镉的亲和力方面的差异表明,CsMTP1和CsMTP4在黄瓜细胞中可能没有功能冗余。

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