首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The ADP and ATP transport in mitochondria and its carrier.
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The ADP and ATP transport in mitochondria and its carrier.

机译:ADP和ATP在线粒体及其载体中运输。

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摘要

Different from some more specialised short reviews, here a general although not encyclopaedic survey of the function, metabolic role, structure and mechanism of the ADP/ATP transport in mitochondria is presented. The obvious need for an "old fashioned" review comes from the gateway role in metabolism of the ATP transfer to the cytosol from mitochondria. Amidst the labours, 40 or more years ago, of unravelling the role of mitochondrial compartments and of the two membranes, the sequence of steps of how ATP arrives in the cytosol became a major issue. When the dust settled, a picture emerged where ATP is exported across the inner membrane in a 1:1 exchange against ADP and where the selection of ATP versus ADP is controlled by the high membrane potential at the inner membrane, thus uplifting the free energy of ATP in the cytosol over the mitochondrial matrix. Thus the disparate energy and redox states of the two major compartments are bridged by two membrane potential responsive carriers to enable their symbiosis in the eukaryotic cell. The advance to the molecular level by studying the binding of nucleotides and inhibitors was facilitated by the high level of carrier (AAC) binding sites in the mitochondrial membrane. A striking flexibility of nucleotide binding uncovered the reorientation of carrier sites between outer and inner face, assisted by the side specific high affinity inhibitors. The evidence of a single carrier site versus separate sites for substrate and inhibitors was expounded. In an ideal setting principles of transport catalysis were elucidated. The isolation of intact AAC as a first for any transporter enabled the reconstitution of transport for unravelling, independently of mitochondrial complications, the factors controlling the ADP/ATP exchange. Electrical currents measured with the reconstituted AAC demonstrated electrogenic translocation and charge shift of reorienting carrier sites. Aberrant or vital para-functions of AAC in basal uncoupling and in the mitochondrial pore transition were demonstrated in mitochondria and by patch clamp with reconstituted AAC. The first amino acid sequence of AAC and of any eukaryotic carrier furnished a 6-transmembrane helix folding model, and was the basis for mapping the structure by access studies with various probes, and for demonstrating the strong conformation changes demanded by the reorientation mechanism. Mutations served to elucidate the function of residues, including the particular sensitivity of ATP versus ADP transport to deletion of critical positive charge in AAC. After resisting for decades, at last the atomic crystal structure of the stabilised CAT-AAC complex emerged supporting the predicted principle fold of the AAC but showing unexpected features relevant to mechanism. Being a snapshot of an extreme abortive "c-state" the actual mechanism still remains a conjecture.
机译:与一些更专业的简短评论不同,此处介绍了线粒体中ADP / ATP转运的功能,代谢作用,结构和机制的一般(尽管不是百科全书)调查。对“老式”综述的明显需求来自在ATP代谢中从线粒体转移到细胞质中的网关作用。在40年前或更早的努力中,线粒体区室和两个膜的作用被弄清了,ATP如何到达细胞质的步骤顺序成为一个主要问题。当尘埃沉淀下来时,出现了一张图片,其中ATP以1:1的交换率与内聚磷酸酯跨过内膜输出,而内聚膜上的高膜电位控制着ATP与ADP的选择,从而提高了内聚膜的自由能。线粒体基质上的细胞质中的ATP。因此,两个主要区室的不同能量和氧化还原状态被两个膜电位响应性载体桥接,以使其在真核细胞中共生。线粒体膜中高水平的载体(AAC)结合位点促进了通过研究核苷酸与抑制剂的结合而向分子水平发展。核苷酸结合的显着灵活性揭示了在侧面和内侧面之间的载体位点的重新定向,辅以侧面特异性的高亲和力抑制剂。阐述了单一载体位点与底物和抑制剂分开位点的证据。在理想的情况下,阐明了运输催化的原理。完整的AAC作为任何转运蛋白的第一个隔离源,都能够重组转运蛋白,以解开控制线粒体ADP / ATP交换的因素,而不受线粒体并发症的影响。用重构的AAC测量的电流证明了电迁移和重定向载体位点的电荷转移。在线粒体中和通过重组AAC的膜片钳显示了AAC在基础解偶联和线粒体孔过渡中异常或重要的辅助功​​能。 AAC和任何真核生物载体的第一个氨基酸序列提供了6个跨膜螺旋折叠模型,并且是通过使用各种探针进行访问研究绘制结构图并证明重新定位机制所需的强构象变化的基础。突变可阐明残基的功能,包括ATP与ADP转运对AAC中关键正电荷缺失的特殊敏感性。经过数十年的抵抗,终于出现了稳定的CAT-AAC络合物的原子晶体结构,支持了AAC的预测原理折叠,但显示出与机理相关的意外特征。作为极端流产的“ c状态”的快照,实际机制仍然是一个推测。

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