Arrivault Stéphanie, Senger Toralf, Krämer Ute
Max Planck Institute of Molecular Plant Physiology, D-14424 Potsdam, Germany.
Plant J. 2006 Jun;46(5):861-79. doi: 10.1111/j.1365-313X.2006.02746.x.
Zinc ions are required to maintain the biological activity of numerous proteins. However, when mislocalized or accumulated in excess, Zn(2+) ions are toxic because of adventitious binding to proteins and displacement of other metal ions, among them Fe(2+), from their binding sites. Heterologous expression of a previously uncharacterized Arabidopsis thaliana metal tolerance protein, MTP3, in the zrc1 cot1 mutant of budding yeast restores tolerance to, and cellular accumulation of, zinc and cobalt. An MTP3-GFP fusion protein localizes to the vacuolar membrane when expressed in Arabidopsis. Ectopic over-expression of MTP3 increases Zn accumulation in both roots and rosette leaves of A. thaliana, and enhances Zn tolerance. Exposure of wild-type plants to high but non-toxic concentrations of Zn or Co, or Fe deficiency, strongly induce MTP3 expression specifically in epidermal and cortex cells of the root hair zone. Silencing of MTP3 by RNA interference causes Zn hypersensitivity and enhances Zn accumulation in above-ground organs of soil-grown plants and of seedlings exposed to excess Zn or to Fe deficiency. Our data indicate that, in wild-type A. thaliana, the AtMTP3 protein contributes to basic cellular Zn tolerance and controls Zn partitioning, particularly under conditions of high rates of Zn influx into the root symplasm.
锌离子是维持众多蛋白质生物活性所必需的。然而,当锌离子定位错误或过量积累时,由于其与蛋白质的偶然结合以及从其他金属离子(如亚铁离子)的结合位点取代这些离子,Zn(2+)离子具有毒性。在芽殖酵母的zrc1 cot1突变体中异源表达一种先前未被表征的拟南芥金属耐受蛋白MTP3,可恢复对锌和钴的耐受性以及细胞对它们的积累。当在拟南芥中表达时,MTP3-GFP融合蛋白定位于液泡膜。MTP3的异位过表达增加了拟南芥根和莲座叶中的锌积累,并增强了对锌的耐受性。将野生型植物暴露于高浓度但无毒的锌或钴,或铁缺乏的环境中,会强烈诱导MTP3在根毛区的表皮和皮层细胞中特异性表达。通过RNA干扰使MTP3沉默会导致锌超敏反应,并增强土壤种植植物和暴露于过量锌或铁缺乏环境中的幼苗地上器官中的锌积累。我们的数据表明,在野生型拟南芥中,AtMTP3蛋白有助于细胞对锌的基本耐受性并控制锌的分配,特别是在锌大量流入根共质体的情况下。