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大肠杆菌腺苷酸激酶第二个保守环中氨基酸取代的结构和功能后果。

Structural and functional consequences of amino acid substitutions in the second conserved loop of Escherichia coli adenylate kinase.

作者信息

Rose T, Glaser P, Surewicz W K, Mantsch H H, Reinstein J, Le Blay K, Gilles A M, Bârzu O

机构信息

Unité de Biochimie des Régulations Cellulaires, Institut Pasteur, Paris, France.

出版信息

J Biol Chem. 1991 Dec 15;266(35):23654-9.

PMID:1748642
Abstract

All known nucleoside monophosphate kinases contain an invariant sequence Asp-Gly-Phe(Tyr)-Pro-Arg. In order to understand better the structural and functional role of individual amino acid residues belonging to the above sequence, three mutants of Escherichia coli adenylate kinase (D84H, G85V, and F86L) were produced by site-directed mutagenesis. Circular dichroism spectra revealed that the secondary structure dichroism spectra revealed that the secondary structure of all three mutant proteins is very similar to that of the wild-type enzyme. However, each of the substitutions resulted in a decreased thermodynamic stability of the protein, as indicated by differential scanning calorimetry measurements and equilibrium unfolding experiments in guanidine HCl. The destabilizing effect was most pronounced for the G85V mutant, in which case the denaturation temperature was decreased by as much as 11 degrees C. The catalytic activity of the three mutants represented less than 1% of that of the wild-type enzyme. Furthermore, for the D84H-modified form of adenylate kinase, the impaired binding of nucleotide substrates was accompanied by a markedly decreased affinity for magnesium ion. These observations support the notion that Asp84 is directly involved in binding of nucleotide substrates and that this binding is mediated by interaction of the aspartic acid residue with divalent cation. The two remaining residues probed in this study, Gly85 and Phe86, belong to a beta-turn which appears to play a major role in stabilizing the three-dimensional structure of adenylate kinase.

摘要

所有已知的核苷单磷酸激酶都含有一段不变序列天冬氨酸-甘氨酸-苯丙氨酸(酪氨酸)-脯氨酸-精氨酸。为了更好地理解属于上述序列的各个氨基酸残基的结构和功能作用,通过定点诱变产生了大肠杆菌腺苷酸激酶的三个突变体(D84H、G85V和F86L)。圆二色光谱显示,所有三个突变蛋白的二级结构与野生型酶的二级结构非常相似。然而,如差示扫描量热法测量和在盐酸胍中的平衡去折叠实验所示,每个取代都导致蛋白质的热稳定性降低。对于G85V突变体,去稳定化作用最为明显,在这种情况下,变性温度降低了多达11℃。这三个突变体的催化活性不到野生型酶的1%。此外,对于腺苷酸激酶的D84H修饰形式,核苷酸底物结合受损伴随着对镁离子的亲和力显著降低。这些观察结果支持这样的观点,即天冬氨酸84直接参与核苷酸底物的结合,并且这种结合是由天冬氨酸残基与二价阳离子的相互作用介导的。本研究中探究的另外两个残基,甘氨酸85和苯丙氨酸86,属于一个β-转角,它似乎在稳定腺苷酸激酶的三维结构中起主要作用。

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Structural and functional consequences of amino acid substitutions in the second conserved loop of Escherichia coli adenylate kinase.大肠杆菌腺苷酸激酶第二个保守环中氨基酸取代的结构和功能后果。
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