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拟南芥重金属P型ATP酶HMA5与金属伴侣相互作用并在根的铜解毒中发挥作用。

The Arabidopsis heavy metal P-type ATPase HMA5 interacts with metallochaperones and functions in copper detoxification of roots.

作者信息

Andrés-Colás Nuria, Sancenón Vicente, Rodríguez-Navarro Susana, Mayo Sonia, Thiele Dennis J, Ecker Joseph R, Puig Sergi, Peñarrubia Lola

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat de València, Av. Dr Moliner, 50, E-46100 Burjassot, Valencia, Spain.

出版信息

Plant J. 2006 Jan;45(2):225-36. doi: 10.1111/j.1365-313X.2005.02601.x.

Abstract

Since copper (Cu) is essential in key physiological oxidation reactions, organisms have developed strategies for handling Cu while avoiding its potentially toxic effects. Among the tools that have evolved to cope with Cu is a network of Cu homeostasis factors such as Cu-transporting P-type ATPases that play a key role in transmembrane Cu transport. In this work we present the functional characterization of an Arabidopsis Cu-transporting P-type ATPase, denoted heavy metal ATPase 5 (HMA5), and its interaction with Arabidopsis metallochaperones. HMA5 is primarily expressed in roots, and is strongly and specifically induced by Cu in whole plants. We have identified and characterized plants carrying two independent T-DNA insertion alleles, hma5-1 and hma5-2. Both mutants are hypersensitive to Cu but not to other metals such as iron, zinc or cadmium. Interestingly, root tips from Cu-treated hma5 mutants exhibit a wave-like phenotype at early stages and later on main root growth completely arrests whereas lateral roots emerge near the crown. Accordingly, these lines accumulate Cu in roots to a greater extent than wild-type plants under Cu excess. Finally, yeast two-hybrid experiments demonstrate that the metal-binding domains of HMA5 interact with Arabidopsis ATX1-like Cu chaperones, and suggest a regulatory role for the plant-specific domain of the CCH Cu chaperone. Based on these findings, we propose a role for HMA5 in Cu compartmentalization and detoxification.

摘要

由于铜(Cu)在关键的生理氧化反应中必不可少,生物体已形成了应对铜的策略,同时避免其潜在的毒性作用。在进化出的应对铜的工具中,有一个铜稳态因子网络,例如在跨膜铜转运中起关键作用的铜转运P型ATP酶。在这项工作中,我们展示了拟南芥铜转运P型ATP酶(称为重金属ATP酶5,HMA5)的功能特性,以及它与拟南芥金属伴侣蛋白的相互作用。HMA5主要在根中表达,并且在全株中受到铜的强烈且特异性诱导。我们鉴定并表征了携带两个独立T-DNA插入等位基因hma5-1和hma5-2的植株。这两个突变体对铜敏感,但对铁、锌或镉等其他金属不敏感。有趣的是,经铜处理的hma5突变体的根尖在早期呈现波浪状表型,随后主根生长完全停止,而侧根在近冠部出现。因此,在铜过量的情况下,这些株系在根中积累的铜比野生型植物更多。最后,酵母双杂交实验表明,HMA5的金属结合结构域与拟南芥ATX1样铜伴侣蛋白相互作用,并暗示了CCH铜伴侣蛋白的植物特异性结构域的调节作用。基于这些发现,我们提出HMA5在铜的区室化和解毒中发挥作用。

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