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首页> 外文期刊>Biochemistry >Identification by NMR of the binding surface for the histidine-containing phosphocarrier protein HPr on the N-terminal domain of enzyme I of the Escherichia coli phosphotransferase system.
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Identification by NMR of the binding surface for the histidine-containing phosphocarrier protein HPr on the N-terminal domain of enzyme I of the Escherichia coli phosphotransferase system.

机译:通过NMR鉴定在大肠杆菌磷酸转移酶系统的酶I的N-末端结构域上的含组氨酸的磷酸载体蛋白HPr的结合表面。

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摘要

The interaction between the approximately 30 kDa N-terminal domain of enzyme I (EIN) and the approximately 9.5 kDa histidine-containing phosphocarrier protein HPr of the Escherichia coli phosphoenolpyruvate:sugar phosphotransferase system has been investigated by heteronuclear magnetic resonance spectroscopy. The complex is in fast exchange, permitting us to follow the chemical shift changes of the backbone NH and 15N resonances of EIN upon complex formation by recording a series of 1H-15N correlation spectra of uniformly 15N-labeled EIN in the presence of increasing amounts of HPr at natural isotopic abundance. The equilibrium association constant derived from analysis of the titration data is approximately 1.5 x 10(5) M(-1), and the lower limit for the dissociation rate constant is 1100 s(-1). By mapping the backbone chemical shift perturbations on the three-dimensional solution structure of EIN [Garrett, D. S., Seok, Y.-J., Liao, D.-I., Peterkofsky, A., Gronenborn, A. M., & Clore, G. M. (1997) Biochemistry 36, 2517-2530], we have identified the binding surface of EIN in contact with HPr. This surface is primarily located in the alpha domain and involves helices H1, H2, and H4, as well as the hinge region connecting helices H2 and H2'. The data also indicate that the active site His 15 of HPr must approach the active site His 189 of EIN along the shallow depression at the interface of the alpha and alpha/beta domains. Interestingly, both the backbone and side chain resonances (assigned from a long-range 1H-15N correlation spectrum) of His 189, which is located at the N-terminus of helix H6 in he alpha/beta domain, are only minimally perturbed upon complexation, indicating that His 189 (in the absence of phosphorylation) does not undergo any significant conformational change or change in pK(a) value upon HPr binding. On the basis of results of this study, as well as a previous study which delineated the interaction surface for EI on HPr [van Nuland, N. A. J., Boelens, R., Scheek, R. M., & Robillard, G. T. (1995) J. Mol. Biol. 246, 180-193], a model for the EIN/HPr complex is proposed in which helix 1 (residues 16-27) and the helical loop (residues 49-53) of HPr slip between the two pairs of helices constituting the alpha domain of EIN. In addition, we suggest a functional role for the kink between helices H2 and H2' of EIN, providing a flexible joint for this interaction to take place.
机译:已通过异核磁共振光谱法研究了酶I(EIN)的大约30 kDa N末端结构域与大肠杆菌磷酸烯醇丙酮酸:糖磷酸转移酶系统的大约9.5 kDa组氨酸的磷酸载体蛋白HPr之间的相互作用。该络合物处于快速交换状态,通过记录一系列在15N标记的EIN上均匀分布的1H-15N相关光谱,我们可以跟踪形成络合物时EIN的主链NH和15N共振的化学位移变化。自然同位素丰度下的HPr。通过滴定数据分析得出的平衡缔合常数约为1.5 x 10(5)M(-1),解离速率常数的下限为1100 s(-1)。通过将主干化学位移扰动映射到EIN的三维溶液结构上[Garrett,DS,Seok,Y.-J.,Liao,D.-I.,Peterkofsky,A.,Gronenborn,AM,&Clore,GM (1997)Biochemistry 36,2517-2530],我们已经确定了EIN与HPr接触的结合表面。该表面主要位于α域中,并涉及螺旋H1,H2和H4,以及连接螺旋H2和H2'的铰链区。数据还表明,HPr的活性位点His 15必须沿着alpha和alpha / beta域的界面处的浅凹陷接近EIN的活性位点His 189。有趣的是,His 189的α/β结构域位于螺旋H6的N端,其骨架和侧链共振(从远距离1H-15N相关光谱中分配)都受到最小程度的干扰,表明His 189(在没有磷酸化的情况下)在HPr结合后不会发生任何显着的构象变化或pK(a)值变化。根据这项研究的结果,以及先前的研究,它描述了EI在HPr上的相互作用表面[van Nuland,N.A. J.,Boelens,R.,Scheek,R.M.,&Robillard,G.T.(1995)J. Mol。生物学246,180-193],提出了一种EIN / HPr复合物的模型,其中HPr的螺旋1(残基16-27)和HPr螺旋环(残基49-53)在构成α域的两对螺旋之间滑动的EIN。此外,我们建议EIN的螺旋H2和H2'之间的纽结起作用,为发生这种相互作用提供灵活的接头。

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