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首页> 外文期刊>The Biochemical Journal >Regulation of the intersubunit ammonia tunnel in Mycobacterium tuberculosis glutamine-dependent NAD+ synthetase.
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Regulation of the intersubunit ammonia tunnel in Mycobacterium tuberculosis glutamine-dependent NAD+ synthetase.

机译:结核分枝杆菌谷氨酰胺依赖性NAD +合成酶中亚单位间氨气通道的调节。

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Glutamine-dependent NAD+ synthetase is an essential enzyme and a validated drug target in Mycobacterium tuberculosis (mtuNadE). It catalyses the ATP-dependent formation of NAD+ from NaAD+ (nicotinic acid-adenine dinucleotide) at the synthetase active site and glutamine hydrolysis at the glutaminase active site. An ammonia tunnel 40 A (1 A=0.1 nm) long allows transfer of ammonia from one active site to the other. The enzyme displays stringent kinetic synergism; however, its regulatory mechanism is unclear. In the present paper, we report the structures of the inactive glutaminase C176A variant in an apo form and in three synthetase-ligand complexes with substrates (NaAD+/ATP), substrate analogue {NaAD+/AMP-CPP (adenosine 5'-[alpha,beta-methylene]triphosphate)} and intermediate analogues (NaAD+/AMP/PPi), as well as the structure of wild-type mtuNadE in a product complex (NAD+/AMP/PPi/glutamate). This series of structures provides snapshots of the ammonia tunnel during the catalytic cycle supported also by kinetics and mutagenesis studies. Three major constriction sites are observed in the tunnel: (i) at the entrance near the glutaminase active site; (ii) in the middle of the tunnel; and (iii) at the end near the synthetase active site. Variation in the number and radius of the tunnel constrictions is apparent in the crystal structures and is related to ligand binding at the synthetase domain. These results provide new insight into the regulation of ammonia transport in the intermolecular tunnel of mtuNadE.
机译:谷氨酰胺依赖性NAD +合成酶是结核分枝杆菌(mtuNadE)中必不可少的酶和经过验证的药物靶标。它在合成酶活性位点催化来自NaAD +(烟酸-腺嘌呤二核苷酸)的ATP依赖性NAD +形成,在谷氨酰胺酶活性位点催化谷氨酰胺水解。长40 A(1 A = 0.1 nm)的氨气通道允许氨从一个活性位点转移到另一个活性位点。该酶表现出严格的动力学协同作用。但是,其调控机制尚不清楚。在本文中,我们报告了载脂蛋白形式和三种带有底物(NaAD + / ATP),底物类似物{NaAD + / AMP-CPP(腺苷5'-α, β-亚甲基三磷酸)}和中间体类似物(NaAD + / AMP / PPi),以及产物复合物中的野生型mtuNadE(NAD + / AMP / PPi /谷氨酸)结构。这一系列的结构提供了催化过程中氨气通道的快照,动力学和诱变研究也对此提供了支持。在隧道中观察到三个主要的收缩部位:(i)在谷氨酰胺酶活性部位附近的入口处; (ii)在隧道的中部; (iii)在合成酶活性位点附近的末端。隧道缩颈的数量和半径的变化在晶体结构中是明显的,并且与在合成酶结构域处的配体结合有关。这些结果为mtuNadE分子间隧道中氨气运输的调控提供了新的见识。

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