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首页> 外文期刊>Journal of Molecular Biology >M. tuberculosis pantothenate kinase: dual substrate specificity and unusual changes in ligand locations.
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M. tuberculosis pantothenate kinase: dual substrate specificity and unusual changes in ligand locations.

机译:结核分枝杆菌泛酸激酶:双重底物特异性和配体位置异常变化。

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Kinetic measurements of enzyme activity indicate that type I pantothenate kinase from Mycobacterium tuberculosis has dual substrate specificity for ATP and GTP, unlike the enzyme from Escherichia coli, which shows a higher specificity for ATP. A molecular explanation for the difference in the specificities of the two homologous enzymes is provided by the crystal structures of the complexes of the M. tuberculosis enzyme with (1) GMPPCP and pantothenate, (2) GDP and phosphopantothenate, (3) GDP, (4) GDP and pantothenate, (5) AMPPCP, and (6) GMPPCP, reported here, and the structures of the complexes of the two enzymes involving coenzyme A and different adenyl nucleotides reported earlier. The explanation is substantially based on two critical substitutions in the amino acid sequence and the local conformational change resulting from them. The structures also provide a rationale for the movement of ligands during the action of the mycobacterial enzyme. Dual specificity of the type exhibited by this enzyme is rare. The change in locations of ligands during action, observed in the case of the M. tuberculosis enzyme, is unusual, so is the striking difference between two homologous enzymes in the geometry of the binding site, locations of ligands, and specificity. Furthermore, the dual specificity of the mycobacterial enzyme appears to have been caused by a biological necessity.
机译:酶活性的动力学测量结果表明,结核分枝杆菌的I型泛酸激酶对ATP和GTP具有双重底物特异性,而大肠杆菌的酶则对ATP具有更高的特异性。两种结核分枝杆菌酶与(1)GMPPCP和泛酸,(2)GDP和磷酸泛酸,(3)GDP的复合物的晶体结构提供了两种同源酶特异性差异的分子解释。 4)此处报道的GDP和泛酸(5)AMPPCP和(6)GMPPCP,以及先前报道的涉及辅酶A和不同腺苷酸核苷酸的两种酶的复合物的结构。该解释基本上是基于氨基酸序列中的两个关键取代和由它们引起的局部构象变化。该结构还为分枝杆菌酶作用期间配体的运动提供了原理。这种酶表现出的双重特异性很少。在结核分枝杆菌酶的情况下观察到,配体在作用期间的位置变化是不寻常的,两种同源酶之间在结合位点的几何形状,配体位置和特异性方面的显着差异也很不寻常。此外,分枝杆菌酶的双重特异性似乎是由于生物学上的需要而引起的。

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