Department of Agricultural Biotechnology, WCU Biomodulation Major, Seoul National University, 599 Gwanak-ro, Gwanak-gu, Seoul 151-921, Korea.
Protein Sci. 2012 Nov;21(11):1726-33. doi: 10.1002/pro.2152. Epub 2012 Sep 25.
Enzyme I initiates a series of phosphotransfer reactions during sugar uptake in the bacterial phosphotransferase system. Here, we have isolated a stable recombinant C-terminal domain of Enzyme I (EIC) of Escherichia coli and characterized its interaction with the N-terminal domain of Enzyme I (EIN) and also with various ligands. EIC can phosphorylate EIN, but their binding is transient regardless of the presence of phosphoenolpyruvate (PEP). Circular dichroism and NMR indicate that ligand binding to EIC induces changes near aromatic groups but not in the secondary structure of EIC. Binding of PEP to EIC is an endothermic reaction with the equilibrium dissociation constant (K(D) ) of 0.28 mM, whereas binding of the inhibitor oxalate is an exothermic reaction with K(D) of 0.66 mM from calorimetry. The binding thermodynamics of EIC and PEP compared to that of Enzyme I (EI) and PEP reveals that domain-domain motion in EI can contribute as large as ∼-3.2 kcal/mol toward PEP binding.
在细菌磷酸转移酶系统中,酶 I 启动一系列糖摄取过程中的磷酸转移反应。在这里,我们分离得到了稳定的大肠杆菌酶 I(EIC)的 C 端结构域重组体,并对其与酶 I 的 N 端结构域(EIN)以及各种配体的相互作用进行了表征。EIC 可以磷酸化 EIN,但无论是否存在磷酸烯醇丙酮酸(PEP),它们的结合都是瞬间的。圆二色性和 NMR 表明,配体与 EIC 的结合会诱导芳香族基团附近发生变化,但不会影响 EIC 的二级结构。EIC 与 PEP 的结合是一个吸热反应,平衡解离常数(K(D))为 0.28mM,而抑制剂草酸盐与 EIC 的结合是一个放热反应,从量热法得出的 K(D)为 0.66mM。与 EI 和 PEP 相比,EIC 和 PEP 的结合热力学表明,EI 中的结构域运动可以为 PEP 结合贡献高达约-3.2 kcal/mol。