首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Substrate Specificity of the Two Mitochondrial Ornithine Carriers Can Be Swapped by Single Mutation in Substrate Binding Site
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Substrate Specificity of the Two Mitochondrial Ornithine Carriers Can Be Swapped by Single Mutation in Substrate Binding Site

机译:两个线粒体鸟氨酸载体的底物特异性可以通过底物结合位点的单一突变来交换。

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摘要

Mitochondrial carriers are a large family of proteins that transport specific metabolites across the inner mitochondrial membrane. Sequence and structure analysis has indicated that these transporters have substrate binding sites in a similar location of the central cavity consisting of three major contact points. Here we have characterized mutations of the proposed substrate binding site in the human ornithine carriers ORC1 and ORC2 by carrying out transport assays with a set of different substrates. The different substrate specificities of the two isoforms, which share 87% identical amino acids, were essentially swapped by exchanging a single residue located at position 179 that is arginine in ORC1 and glutamine in ORC2. Altogether the substrate specificity changes demonstrate that Arg-179 and Glu-180 of contact point II bind the Cα carboxylate and amino group of the substrates, respectively. Residue Glu-77 of contact point I most likely interacts with the terminal amino group of the substrate side chain. Furthermore, it is likely that all three contact points are involved in the substrate-induced conformational changes required for substrate translocation because Arg-179 is probably connected with Arg-275 of contact point III through Trp-224 by cation-π interactions. Mutations at position 179 also affected the turnover number of the ornithine carrier severely, implying that substrate binding to residue 179 is a rate-limiting step of the catalytic transport cycle. Given that Arg-179 is located in the vicinity of the matrix gate, it is concluded that it is a key residue in the opening of the carrier to the matrix side.
机译:线粒体载体是一大类蛋白质,可跨线粒体内膜转运特定的代谢产物。序列和结构分析表明,这些转运蛋白在由三个主要接触点组成的中心腔的相似位置具有底物结合位点。在这里,我们通过使用一组不同的底物进行转运测定,对人鸟氨酸载体ORC1和ORC2中提议的底物结合位点的突变进行了表征。共享87%相同氨基酸的两种同工型的不同底物特异性基本上通过交换位于位置179上的一个残基(即ORC1中的精氨酸和ORC2中的谷氨酰胺)来交换。总体而言,底物特异性的变化表明,接触点II的Arg-179和Glu-180分别结合了底物的Cα羧酸盐和氨基。接触点I的残基Glu-77最有可能与底物侧链的氨基末端相互作用。此外,所有三个接触点都可能参与了底物移位所需的底物诱导的构象变化,因为Arg-179可能通过阳离子-π相互作用通过Trp-224与接触点III的Arg-275连接。 179位的突变也严重影响鸟氨酸载体的周转次数,这表明底物与残基179的结合是催化转运周期的限速步骤。假定Arg-179位于矩阵门附近,可以得出结论,它是载体向矩阵一侧开口的关键残基。

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