首页> 外文期刊>Journal of Molecular Biology >Kinetic, thermodynamic, and structural insight into the mechanism of phosphopantetheine adenylyltransferase from Mycobacterium tuberculosis.
【24h】

Kinetic, thermodynamic, and structural insight into the mechanism of phosphopantetheine adenylyltransferase from Mycobacterium tuberculosis.

机译:结核分枝杆菌磷酸泛肽腺苷酸转移酶机理的动力学,热力学和结构研究。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Phosphopantetheine adenylyltransferase (PPAT) catalyzes the penultimate step in the coenzyme A (CoA) biosynthetic pathway, reversibly transferring an adenylyl group from ATP to 4'-phosphopantetheine (PhP) to form dephosphocoenzyme A. This reaction sits at the branch point between the de novo pathway and the salvage pathway, and has been shown to be a rate-limiting step in the biosynthesis of CoA. Importantly, bacterial and mammalian PPATs share little sequence homology, making the enzyme a potential target for antibiotic development. A series of steady-state kinetic, product inhibition, and direct binding studies with Mycobacterium tuberculosis PPAT (MtPPAT) was conducted and suggests that the enzyme utilizes a nonrapid-equilibrium random bi-bi mechanism. The kinetic response of MtPPAT to the binding of ATP was observed to be sigmoidal under fixed PhP concentrations, but substrate inhibition was observed at high PhP concentrations under subsaturating ATP concentrations, suggesting a preferred pathway to ternary complex formation. Negative cooperativity in the kinetic response of MtPPAT to PhP binding was observed under certain conditions and confirmed thermodynamically by isothermal titration calorimetry, suggesting the formation of an asymmetric quaternary structure during sequential ligation of substrates. Asymmetry in binding was also observed in isothermal titration calorimetry experiments with dephosphocoenzyme A and CoA. X-ray structures of MtPPAT in complex with PhP and the nonhydrolyzable ATP analogue adenosine-5'-[(alpha,beta)-methyleno]triphosphate were solved to 1.57 A and 2.68 A, respectively. These crystal structures reveal small conformational changes in enzyme structure upon ligand binding, which may play a role in the nonrapid-equilibrium mechanism. We suggest that the proposed kinetic mechanism and asymmetric character in MtPPAT ligand binding may provide a means of reaction and pathway regulation in addition to that of the previously determined CoA feedback.
机译:磷酸泛酸腺苷酸基转移酶(PPAT)催化辅酶A(CoA)生物合成途径中的倒数第二步,可逆地将腺苷酸基团从ATP转移至4'-磷酸泛素(PhP),形成脱磷酸辅酶A。该反应位于从头开始的分支点途径和挽救途径,并且已被证明是CoA生物合成中的限速步骤。重要的是,细菌和哺乳动物的PPAT几乎没有序列同源性,使该酶成为抗生素开发的潜在靶标。进行了一系列与结核分枝杆菌PPAT(MtPPAT)的稳态动力学,产物抑制和直接结合研究,表明该酶利用了非快速平衡的随机bi-bi机制。在固定的PhP浓度下,观察到MtPPAT对ATP结合的动力学响应是S形的,但是在不饱和的ATP浓度下,在高PhP浓度下观察到了底物抑制作用,表明三元复合物形成的优选途径。在某些条件下观察到了MtPPAT对PhP结合的动力学响应中的负协同性,并通过等温滴定量热法进行了热力学证实,表明底物顺序连接过程中形成了不对称的四级结构。在用脱磷酸辅酶A和CoA进行的等温滴定量热法实验中也观察到结合不对称。 MtPPAT与PhP和不可水解的ATP类似物腺苷5'-[(α,β)-甲基烯丙基]三磷酸复合的X射线结构分别解析为1.57 A和2.68A。这些晶体结构揭示了配体结合后酶结构的微小构象变化,这可能在非快速平衡机制中起作用。我们建议,除了先前确定的CoA反馈之外,MtPPAT配体结合中提出的动力学机制和不对称特征可能还提供了反应和途径调控的手段。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号