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HMA1是叶绿体被膜中的一种新型铜-ATP酶,在不利光照条件下对生长至关重要。

HMA1, a new Cu-ATPase of the chloroplast envelope, is essential for growth under adverse light conditions.

作者信息

Seigneurin-Berny Daphné, Gravot Antoine, Auroy Pascaline, Mazard Christophe, Kraut Alexandra, Finazzi Giovanni, Grunwald Didier, Rappaport Fabrice, Vavasseur Alain, Joyard Jacques, Richaud Pierre, Rolland Norbert

机构信息

Laboratoire de Physiologie Cellulaire Végétale, Unité Mixte de Recherche 5168 CNRS/CEA/Institut National de la Recherche Agronomique, Université Joseph Fourier, Département Réponse et Dynamique Cellulaires (DRDC)/CEA-Grenoble, France.

出版信息

J Biol Chem. 2006 Feb 3;281(5):2882-92. doi: 10.1074/jbc.M508333200. Epub 2005 Nov 10.

Abstract

Although ions play important roles in the cell and chloroplast metabolism, little is known about ion transport across the chloroplast envelope. Using a proteomic approach specifically targeted to the Arabidopsis chloroplast envelope, we have identified HMA1, which belongs to the metal-transporting P1B-type ATPases family. HMA1 is mainly expressed in green tissues, and we validated its chloroplast envelope localization. Yeast expression experiments demonstrated that HMA1 is involved in copper homeostasis and that deletion of its N-terminal His-domain partially affects the metal transport. Characterization of hma1 Arabidopsis mutants revealed a lower chloroplast copper content and a diminution of the total chloroplast superoxide dismutase activity. No effect was observed on the plastocyanin content in these lines. The hma1 insertional mutants grew like WT plants in standard condition but presented a photosensitivity phenotype under high light. Finally, direct biochemical ATPase assays performed on purified chloroplast envelope membranes showed that the ATPase activity of HMA1 is specifically stimulated by copper. Our results demonstrate that HMA1 offers an additional way to the previously characterized chloroplast envelope Cu-ATPase PAA1 to import copper in the chloroplast.

摘要

尽管离子在细胞和叶绿体代谢中发挥着重要作用,但关于离子跨叶绿体包膜的运输却知之甚少。我们采用专门针对拟南芥叶绿体包膜的蛋白质组学方法,鉴定出了属于金属转运P1B型ATP酶家族的HMA1。HMA1主要在绿色组织中表达,我们验证了其在叶绿体包膜中的定位。酵母表达实验表明,HMA1参与铜稳态,其N端组氨酸结构域的缺失部分影响金属运输。对hma1拟南芥突变体的表征显示,叶绿体铜含量较低,叶绿体超氧化物歧化酶总活性降低。在这些品系中未观察到质体蓝素含量的影响。hma1插入突变体在标准条件下的生长与野生型植物相似,但在高光下表现出光敏感表型。最后,对纯化的叶绿体包膜膜进行的直接生化ATP酶分析表明,HMA1的ATP酶活性受到铜的特异性刺激。我们的结果表明,HMA1为先前表征的叶绿体包膜铜ATP酶PAA1提供了另一种将铜导入叶绿体的途径。

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