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首页> 外文期刊>Protein Engineering >An absolute requirement of fructose 1,6-bisphosphate for the Lactobacillus casei L-lactate dehydrogenase activity induced by a single amino acid substitution.
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An absolute requirement of fructose 1,6-bisphosphate for the Lactobacillus casei L-lactate dehydrogenase activity induced by a single amino acid substitution.

机译:果糖1,6-二磷酸对由单个氨基酸取代诱导的干酪乳杆菌L-乳酸脱氢酶活性的绝对要求。

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摘要

Lactobacillus casei allosteric L-lactate dehydrogenase (L-LDH) absolutely requires fructose 1,6-bisphosphate [Fru(1,6)P2] for its catalytic activity under neutral conditions, but exhibits marked catalytic activity in the absence of Fru(1,6)P(2) under acidic conditions through the homotropic activation effect of substrate pyruvate. In this enzyme, a single amino acid replacement, i.e. that of His205 conserved in the Fru(1,6)P(2)-binding site of certain allosteric L-LDHs of lactic acid bacteria with Thr, did not induce a marked loss of the activation effect of Fru(1,6)P(2) or divalent metal ions, which are potent activators that improve the activation function of Fru(1,6)P(2) under neutral conditions. However, this replacement induced a great loss of the Fru(1,6)P(2)-independent activation effect of pyruvate or pyruvate analogs under acidic conditions, consequently indicating an absolute Fru(1,6)P(2) requirement for the enzyme activity. The replacement also induced a significant reduction in the pH-dependent sensitivity of the enzyme to Fru(1,6)P(2), through a slight decrease and increase of the Fru(1,6)P(2) sensitivity under acidic and neutral conditions, respectively, indicating that His205 is also largely involved in the pH-dependent sensitivity of L.casei L-LDH to Fru(1,6)P(2). The role of His205 in the allosteric regulation of the enzyme is discussed on the basis of the known crystal structures of L-LDHs.
机译:干酪乳杆菌变构L-乳酸脱氢酶(L-LDH)在中性条件下绝对需要果糖1,6-二磷酸[Fru(1,6)P2],但在没有Fru(1, 6)P(2)在酸性条件下通过丙酮酸底物的同向活化作用。在这种酶中,单个氨基酸的替换,即His205的替换,在带有Thr的乳酸菌的某些变构L-LDHs的Fru(1,6)P(2)结合位点中保守,并没有引起显着的氨基酸损失。 Fru(1,6)P(2)或二价金属离子的活化作用,它们是有效的活化剂,可在中性条件下改善Fru(1,6)P(2)的活化功能。但是,这种替代引起了丙酮酸或丙酮酸类似物在酸性条件下的Fru(1,6)P(2)独立活化作用的极大损失,因此表明对Fru(1,6)P(2)的绝对需要酶活性。替换还通过显着降低和增加Fru(1,6)P(2)在酸性和酸性条件下的敏感性,从而导致酶对Fru(1,6)P(2)的pH依赖性敏感性显着降低。中性条件,分别表明,His205还很大程度上参与了L.casei L-LDH对Fru(1,6)P(2)的pH依赖性敏感性。基于已知的L-LDHs晶体结构,讨论了His205在酶的变构调节中的作用。

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