Sancenón Vicente, Puig Sergi, Mira Helena, Thiele Dennis J, Peñarrubia Lola
Departament de Bioquímica i Biologia Molecular, Universitat de València, Dr. Moliner 50, Burjassot, València, 46100 Spain.
Plant Mol Biol. 2003 Mar;51(4):577-87. doi: 10.1023/a:1022345507112.
Despite copper ions being crucial in proteins participating in plant processes such as electron transport, free-radical elimination and hormone perception and signaling, very little is known about copper inward transport across plant membranes. In this work, a five-member family (COPT1-5) of putative Arabidopsis copper transporters is described. We ascertain the ability of these proteins to functionally complement and transport copper in the corresponding Saccharomyces cerevisiae high-affinity copper transport mutant. The specific expression pattern of the Arabidopsis COPT1-5 mRNA in different tissues was analyzed by RT-PCR. Although all members are ubiquitously expressed, differences in their relative abundance in roots, leaves, stem and flowers have been observed. Moreover, steady-state COPT1 and COPT2 mRNA levels, the members that are most efficacious in complementing the S. cerevisiae high-affinity copper transport mutant, are down-regulated under copper excess, consistent with a role for these proteins in copper transport in Arabidopsis cells.
尽管铜离子在参与植物电子传递、自由基清除以及激素感知和信号传导等过程的蛋白质中至关重要,但关于铜离子跨植物膜的内向运输却知之甚少。在这项研究中,描述了一个由五个成员组成的拟南芥铜转运蛋白家族(COPT1 - 5)。我们确定了这些蛋白质在相应的酿酒酵母高亲和力铜转运突变体中功能性互补和运输铜的能力。通过逆转录聚合酶链反应(RT-PCR)分析了拟南芥COPT1 - 5 mRNA在不同组织中的特异性表达模式。虽然所有成员均普遍表达,但在根、叶、茎和花中的相对丰度存在差异。此外,在铜过量条件下,对酿酒酵母高亲和力铜转运突变体互补效果最佳的成员COPT1和COPT2的稳态mRNA水平下调,这与这些蛋白质在拟南芥细胞铜转运中的作用一致。