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A Novel Prokaryote-Type ECF/ABC Transporter Module in Chloroplast Metal Homeostasis

机译:叶绿体金属稳态中的一种新型原脑型ECF / ABC转运仪模块

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摘要

During evolution, chloroplasts, which originated by endosymbiosis of a prokaryotic ancestor of today’s cyanobacteria with a eukaryotic host cell, were established as the site for photosynthesis. Therefore, chloroplast organelles are loaded with transition metals including iron, copper, and manganese, which are essential for photosynthetic electron transport due to their redox capacity. Although transport, storage, and cofactor-assembly of metal ions in chloroplasts are tightly controlled and crucial throughout plant growth and development, knowledge on the molecular nature of chloroplast metal-transport proteins is still fragmentary. Here, we characterized the soluble, ATP-binding ABC-transporter subunits ABCI10 and ABCI11 in Arabidopsis thaliana, which show similarities to components of prokaryotic, multisubunit ABC transporters. Both ABCI10 and ABCI11 proteins appear to be strongly attached to chloroplast-intrinsic membranes, most likely inner envelopes for ABCI10 and possibly plastoglobuli for ABCI11. Loss of ABCI10 and ABCI11 gene products in Arabidopsis leads to extremely dwarfed, albino plants showing impaired chloroplast biogenesis and deregulated metal homeostasis. Further, we identified the membrane-intrinsic protein ABCI12 as potential interaction partner for ABCI10 in the inner envelope. Our results suggest that ABCI12 inserts into the chloroplast inner envelope membrane most likely with five predicted α-helical transmembrane domains and represents the membrane-intrinsic subunit of a prokaryotic-type, energy-coupling factor (ECF) ABC-transporter complex. In bacteria, these multisubunit ECF importers are widely distributed for the uptake of nickel and cobalt metal ions as well as for import of vitamins and several other metabolites. Therefore, we propose that ABCI10 (as the ATPase A-subunit) and ABCI12 (as the membrane-intrinsic, energy-coupling T-subunit) are part of a novel, chloroplast envelope-localized, AAT energy-coupling module of a prokaryotic-type ECF transporter, most likely involved in metal ion uptake.
机译:在进化期间,叶绿体,它起源于当今蓝细菌的原核祖先的胚胎细胞,与真核宿主细胞,作为光合作用位点。因此,叶绿体细胞器装有包括铁,铜和锰的过渡金属,这对于由于它们的氧化还原容量而言,这对于光合电子传输至关重要。虽然运输,储存,并在叶绿体金属离子的辅助因子组装严格控制和叶绿体金属转运蛋白的分子性质整个植物的生长和发展,知识的关键仍然是零碎的。在这里,我们特征在于所述可溶性,ATP结合ABC转运亚基ABCI10和ABCI11拟南芥,其示出相似性的原核细胞,多亚基ABC转运部件。 ABCI10和ABCI11蛋白质似乎似乎强烈地连接到叶绿体内膜,最可能是ABCI10的内部包膜,并且可能是ABCI11的塑料囊泡。 ABCI10和ABCI11在拟南芥中的丧失导致极度矮化,白化植物,显示叶绿体生物发生损害和损失的金属稳态。此外,我们将膜固有蛋白ABCI12鉴定为内部包络中ABCI10的潜在相互作用伙伴。我们的研究结果表明,ABCI12将叶绿体内包络膜插入最可能具有五个预测的α-螺旋跨膜结构域的叶绿体内部包膜膜,并且代表原核型能量偶联因子(ECF)ABC-TRANSION络合物的膜固有亚基。在细菌中,这些多相管道的ECF进口商被广泛分布用于吸收镍和钴金属离子以及进口维生素和其他几种代谢物。因此,我们提出ABCI10(作为ATPase A-亚基)和ABCI12(作为膜内在,能量偶联T-亚基)是一种新的叶绿体包膜局部化的AAT能量耦合模块的一部分的原核 - ECF转运仪,最有可能参与金属离子吸收。

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