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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Comparison of the backbone dynamics of the apo- and holo-carboxy-terminal domain of the biotin carboxyl carrier subunit of Escherichia coli acetyl-CoA carboxylase.
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Comparison of the backbone dynamics of the apo- and holo-carboxy-terminal domain of the biotin carboxyl carrier subunit of Escherichia coli acetyl-CoA carboxylase.

机译:大肠杆菌乙酰辅酶A羧化酶生物素羧基载体亚基载脂蛋白和全羧基末端结构域骨架动态的比较。

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摘要

The biotin carboxyl carrier protein (BCCP) is a subunit of acetyl-CoA carboxylase, a biotin-dependent enzyme that catalyzes the first committed step of fatty acid biosynthesis. In its functional cycle, this protein engages in heterologous protein-protein interactions with three distinct partners, depending on its state of post-translational modification. Apo-BCCP interacts specifically with the biotin holoenzyme synthetase, BirA, which results in the post-translational attachment of biotin to a single lysine residue on BCCP. Holo-BCCP then interacts with the biotin carboxylase subunit of acetyl-CoA carboxylase, which leads to the addition of the carboxylate group of bicarbonate to biotin. Finally, the carboxy-biotinylated form of BCCP interacts with transcarboxylase in the transfer of the carboxylate to acetyl-CoA to form malonyl-CoA. The determinants of protein-protein interaction specificity in this system are unknown. The NMR solution structure of the unbiotinylated form of an 87 residue C-terminal domain fragment (residue 70-156) of BCCP (holoBCCP87) and the crystal structure of the biotinylated form of a C-terminal fragment (residue 77-156) of BCCP from Escherichia coli acetyl-CoA carboxylase have previously been determined. Comparative analysis of these structures provided evidence for small, localized conformational changes in the biotin-binding region upon biotinylation of the protein. These structural changes may be important for regulating specific protein-protein interactions. Since the dynamic properties of proteins are correlated with local structural environments, we have determined the relaxation parameters of the backbone 15N nuclear spins of holoBCCP87, and compared these with the data obtained for the apo protein. The results indicate that upon biotinylation, the inherent mobility of the biotin-binding region and the protruding thumb, with which the biotin group interacts in the holo protein, are significantly reduced.
机译:生物素羧基载体蛋白(BCCP)是乙酰辅酶A羧化酶的亚基,乙酰辅酶A羧化酶是一种生物素依赖性酶,可催化脂肪酸生物合成的第一步。在其功能周期中,该蛋白质根据其翻译后修饰的状态与三个不同的伴侣进行异源蛋白质-蛋白质相互作用。 Apo-BCCP与生物素全酶合成酶BirA特异性相互作用,导致生物素翻译后附着在BCCP的单个赖氨酸残基上。然后,Holo-BCCP与乙酰辅酶A羧化酶的生物素羧化酶亚基相互作用,这导致将碳酸氢盐的羧酸酯基团添加到生物素中。最后,BCCP的羧基生物素化形式与转羧酶相互作用,将羧酸酯转移至乙酰辅酶A,形成丙二酰辅酶A。该系统中蛋白质间相互作用特异性的决定因素未知。 BCCP(holoBCCP87)的87个残基C端结构域片段(残基70-156)的未生物素化形式的NMR溶液结构和BCCP的C末端片段(残基77-156)的生物素化形式的晶体结构先前已经确定了来自大肠杆菌的乙酰辅酶A羧化酶。这些结构的比较分析提供了在蛋白质生物素化后生物素结合区中微小的局部构象变化的证据。这些结构变化对于调节特定的蛋白质-蛋白质相互作用可能很重要。由于蛋白质的动态特性与局部结构环境相关,我们确定了holoBCCP87的骨架15N核自旋的弛豫参数,并将其与载脂蛋白的数据进行了比较。结果表明,在生物素化后,生物素结合区和伸出的拇指的固有迁移率显着降低,生物素基团与之相互作用的蛋白质在全息蛋白中相互作用。

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