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拟南芥细胞内的 COPT5 转运蛋白在严重铜缺乏下对光合作用电子传递是必需的。

The intracellular Arabidopsis COPT5 transport protein is required for photosynthetic electron transport under severe copper deficiency.

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat de València, Ave. Doctor Moliner 50, E-46100 Burjassot, València, Spain.

出版信息

Plant J. 2011 Mar;65(6):848-60. doi: 10.1111/j.1365-313X.2010.04472.x. Epub 2011 Feb 1.

Abstract

Copper is an essential micronutrient that functions as a redox cofactor in multiple plant processes, including photosynthesis. Arabidopsis thaliana possesses a conserved family of CTR-like high-affinity copper transport proteins denoted as COPT1-5. COPT1, the only family member that is functionally characterized, participates in plant copper acquisition. However, little is known about the function of the other Arabidopsis COPT proteins in the transport and distribution of copper. Here, we show that a functional fusion of COPT5 to the green fluorescent protein localizes in Arabidopsis cells to the prevacuolar compartment. Plants defective in COPT5 do not exhibit any significant phenotype under copper-sufficient conditions, but their growth is compromised under copper limitation. Under extreme copper deficiency, two independent copt5 knockout mutant lines exhibit severe defects in vegetative growth and root elongation, low chlorophyll content, and impairment in the photosynthetic electron transfer. All these phenotypes are rescued when the wild-type copy of the COPT5 gene is retransformed into a copt5 knockout line or when copper, but not other metals, are added to the medium. COPT5 is expressed in vascular tissues, with elevated levels in roots. Taken together, these results suggest that COPT5 plays an important role in the plant response to environmental copper scarcity, probably by remobilizing copper from prevacuolar vesicles, which could act as internal stores or recycling vesicles to provide the metal cofactor to key copper-dependent processes such as photosynthesis.

摘要

铜是一种必需的微量元素,作为多种植物过程(包括光合作用)的氧化还原辅助因子发挥作用。拟南芥拥有一个保守的 CTR 样高亲和力铜转运蛋白家族,称为 COPT1-5。COPT1 是唯一功能特征明确的家族成员,参与植物铜的获取。然而,关于其他拟南芥 COPT 蛋白在铜的运输和分布中的功能知之甚少。在这里,我们表明,COPT5 与绿色荧光蛋白的功能融合定位于拟南芥细胞的前液泡区室。在铜充足的条件下,COPT5 缺陷的植物没有表现出任何明显的表型,但它们的生长在铜限制下受到损害。在极端铜缺乏的情况下,两个独立的 copt5 敲除突变体系表现出营养生长和根伸长严重缺陷、叶绿素含量低以及光合作用电子传递受损。当 COPT5 基因的野生型副本被重新转化为 copt5 敲除系,或者当铜(而不是其他金属)被添加到培养基中时,所有这些表型都得到了挽救。COPT5 在血管组织中表达,在根中表达水平升高。总之,这些结果表明 COPT5 在植物对环境铜缺乏的反应中起着重要作用,可能通过从前液泡小泡中再动员铜来发挥作用,前液泡小泡可以作为内部储存库或回收小泡,为关键的依赖铜的过程(如光合作用)提供金属辅助因子。

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