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Conformational Dynamics of the Bovine Mitochondrial ADP/ATP Carrier Isoform 1 Revealed by Hydrogen/Deuterium Exchange Coupled to Mass Spectrometry*

机译:氢/氘交换与质谱联用揭示牛线粒体ADP / ATP载体同工型1的构象动力学*

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摘要

The mitochondrial adenine nucleotide carrier (Ancp) catalyzes the transport of ADP and ATP across the mitochondrial inner membrane, thus playing an essential role in cellular energy metabolism. During the transport mechanism the carrier switches between two different conformations that can be blocked by two toxins: carboxyatractyloside (CATR) and bongkrekic acid. Therefore, our understanding of the nucleotide transport mechanism can be improved by analyzing structural differences of the individual inhibited states. We have solved the three-dimensional structure of bovine carrier isoform 1 (bAnc1p) in a complex with CATR, but the structure of the carrier-bongkrekic acid complex, and thus, the detailed mechanism of transport remains unknown. Improvements in sample processing in the hydrogen/deuterium exchange technique coupled to mass spectrometry (HDX-MS) have allowed us to gain novel insights into the conformational changes undergone by bAnc1p. This paper describes the first study of bAnc1p using HDX-MS. Results obtained with the CATR-bAnc1p complex were fully in agreement with published results, thus, validating our approach. On the other hand, the HDX kinetics of the two complexes displays marked differences. The bongkrekic acid-bAnc1p complex exhibits greater accessibility to the solvent on the matrix side, whereas the CATR-bAnc1p complex is more accessible on the intermembrane side. These results are discussed with respect to the structural and biochemical data available on Ancp.
机译:线粒体腺嘌呤核苷酸载体(Ancp)催化ADP和ATP穿过线粒体内膜,从而在细胞能量代谢中起重要作用。在转运机制中,载体在两种不同的构象之间切换,这些构象可以被两种毒素所阻断:羧基白术苷(CATR)和邦克里奇酸。因此,我们可以通过分析各个抑制状态的结构差异来提高对核苷酸转运机制的了解。我们已经解决了CATR配合物中牛载体同工型1(bAnc1p)的三维结构,但是载体-邦克里克酸配合物的结构,因此,详细的运输机理仍然未知。氢/氘交换技术与质谱(HDX-MS)结合对样品处理的改进,使我们对bAnc1p经历的构象变化有了新的认识。本文介绍了使用HDX-MS对bAnc1p进行的首次研究。用CATR-bAnc1p复合物获得的结果与已发表的结果完全一致,从而验证了我们的方法。另一方面,两种配合物的HDX动力学表现出明显的差异。凤梨酸-bAnc1p配合物在基质一侧显示出更易接近溶剂,而CATR-bAnc1p配合物在膜间一侧更易于接近。关于在Ancp上可获得的结构和生化数据讨论了这些结果。

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