Boutigny Sylvain, Sautron Emeline, Finazzi Giovanni, Rivasseau Corinne, Frelet-Barrand Annie, Pilon Marinus, Rolland Norbert, Seigneurin-Berny Daphné
CNRS, Laboratoire de Physiologie Cellulaire et Végétale, UMR 5168, 17 rue des Martyrs, F-38054 Grenoble, France.
J Exp Bot. 2014 Apr;65(6):1529-40. doi: 10.1093/jxb/eru020. Epub 2014 Feb 7.
Copper is an essential micronutrient but it is also potentially toxic as copper ions can catalyse the production of free radicals, which result in various types of cell damage. Therefore, copper homeostasis in plant and animal cells must be tightly controlled. In the chloroplast, copper import is mediated by a chloroplast-envelope PIB-type ATPase, HMA6/PAA1. Copper may also be imported by HMA1, another chloroplast-envelope PIB-ATPase. To get more insights into the specific functional roles of HMA1 and PAA1 in copper homeostasis, this study analysed the phenotypes of plants affected in the expression of both HMA1 and PAA1 ATPases, as well as of plants overexpressing HMA1 in a paa1 mutant background. The results presented here provide new evidence associating HMA1 with copper homeostasis in the chloroplast. These data suggest that HMA1 and PAA1 behave as distinct pathways for copper import and targeting to the chloroplast. Finally, this work also provides evidence for an alternative route for copper import into the chloroplast mediated by an as-yet unidentified transporter that is neither HMA1 nor PAA1.
铜是一种必需的微量营养素,但它也具有潜在毒性,因为铜离子可催化自由基的产生,从而导致各种类型的细胞损伤。因此,植物和动物细胞中的铜稳态必须受到严格控制。在叶绿体中,铜的导入由叶绿体包膜PIB型ATP酶HMA6/PAA1介导。铜也可能由另一种叶绿体包膜PIB-ATP酶HMA1导入。为了更深入了解HMA1和PAA1在铜稳态中的具体功能作用,本研究分析了HMA1和PAA1 ATP酶表达受影响的植物以及在paa1突变背景下过表达HMA1的植物的表型。此处呈现的结果提供了将HMA1与叶绿体中的铜稳态相关联的新证据。这些数据表明,HMA1和PAA1作为铜导入和靶向叶绿体的不同途径发挥作用。最后,这项工作还为一种由尚未鉴定的转运蛋白介导的铜导入叶绿体的替代途径提供了证据,该转运蛋白既不是HMA1也不是PAA1。