首页> 外文OA文献 >Conformational stability changes of the amino terminal domain of enzyme I of the Escherichia coli phosphoenolpyruvate: sugar phosphotransferase system produced by substituting alanine or glutamate for the active-site histidine 189: implications for phosphorylation effects.
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Conformational stability changes of the amino terminal domain of enzyme I of the Escherichia coli phosphoenolpyruvate: sugar phosphotransferase system produced by substituting alanine or glutamate for the active-site histidine 189: implications for phosphorylation effects.

机译:用丙氨酸或谷氨酸代替活性位点组氨酸189产生的大肠杆菌磷酸烯醇式丙酮酸:糖磷酸转移酶系统的酶I氨基末端结构域的构象稳定性变化:对磷酸化作用的影响。

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摘要

The amino terminal domain of enzyme I (residues 1-258 + Arg; EIN) and full length enzyme I (575 residues; EI) harboring active-site mutations (H189E, expected to have properties of phosphorylated forms, and H189A) have been produced by protein bioengineering. Differential scanning calorimetry (DSC) and temperature-induced changes in ellipticity at 222 nm for monomeric wild-type and mutant EIN proteins indicate two-state unfolding. For EIN proteins in 10 mM K-phosphate (and 100 mM KCl) at pH 7.5, deltaH approximately 140 +/- 10 (160) kcal mol(-1) and deltaCp approximately 2.7 (3.3) kcal K(-1) mol(-1). Transition temperatures (Tm) are 57 (59), 55 (58), and 53 (56) degrees C for wild-type, H189A, and H189E forms of EIN, respectively. The order of conformational stability for dephospho-His189, phospho-His189, and H189 substitutions of EIN at pH 7.5 is: His > Ala > Glu > His-PO3(2-) due to differences in conformational entropy. Although H189E mutants have decreased Tm values for overall unfolding the amino terminal domain, a small segment of structure (3 to 12%) is stabilized (Tm approximately 66-68 degrees C). This possibly arises from an ion pair interaction between the gamma-carboxyl of Glu189 and the epsilon-amino group of Lys69 in the docking region for the histidine-containing phosphocarrier protein HPr. However, the binding of HPr to wild-type and active-site mutants of EIN and EI is temperature-independent (entropically controlled) with about the same affinity constant at pH 7.5: K(A)' = 3 +/- 1 x 10(5) M(-1) for EIN and approximately 1.2 x 10(5) M(-1) for EI.
机译:已经生产了具有活性位点突变(预期具有磷酸化形式的特性的H189E和H189A)的酶I(残基1-258 + Arg; EIN)和全长酶I(575残基; EI)的氨基末端结构域通过蛋白质生物工程。差示扫描量热法(DSC)和温度诱导的单体野生型和突变EIN蛋白在222 nm处的椭圆率变化表明两种状态展开。对于pH值为7.5的10 mM K-磷酸盐(和100 mM KCl)中的EIN蛋白,deltaH约为140 +/- 10(160)kcal mol(-1)和deltaCp约为2.7(3.3)kcal K(-1)mol( -1)。对于野生型,H189A和H189E形式的EIN,转变温度(Tm)分别为57(59),55(58)和53(56)摄氏度。在pH 7.5时,EIN的去磷酸-His189,磷酸-His189和H189取代的构象稳定性顺序为:由于构象熵的差异,His> Ala> Glu> His-PO3(2-)。尽管H189E突变体总体上未展开氨基末端结构域时Tm值降低,但一小部分结构(3%至12%)稳定了(Tm约为66-68摄氏度)。这可能是由于Glu189的γ-羧基与Lys69的ε-氨基之间的离子对相互作用所致,该区域是含组氨酸的磷酸载体蛋白HPr的对接区域。但是,HPr与EIN和EI的野生型和活性位点突变体的结合是温度独立的(熵控制的),在pH 7.5时具有大约相同的亲和常数:K(A)'= 3 +/- 1 x 10 (5)对于EIN为M(-1),对于EI为约1.2 x 10(5)M(-1)。

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