Suppr超能文献

扰动D-木糖异构酶中的金属位点。组氨酸-220突变对酶稳定性的影响。

Perturbing the metal site in D-xylose isomerase. Effect of mutations of His-220 on enzyme stability.

作者信息

Cha J, Cho Y, Whitaker R D, Carrell H L, Glusker J P, Karplus P A, Batt C A

机构信息

Department of Food Science, Cornell University, Ithaca, New York 14853.

出版信息

J Biol Chem. 1994 Jan 28;269(4):2687-94.

PMID:8300598
Abstract

The histidine residue at position 220 in the Streptomyces rubiginosus D-xylose isomerase is conserved in all D-xylose isomerases. The three-dimensional structure of D-xylose isomerase reveals that His-220 is part of the octahedral coordination sphere of M2, one of two metal ions (Mn2+) in the active site. This work describes the effects of replacing His-220 with Ser, Glu, Asn, and Lys. The consequences of these amino acid substitutions on enzyme activity, thermostability, and structure were analyzed by kinetic, denaturation, and crystallographic methods. The kcat values H220S, H220N, and H220E are only 0.3-0.5% of the wild-type values, and the Km for each of these mutant enzymes increased by 30-40-fold over the wild-type value. The mutant enzyme H220K did not exhibit any measurable activity. Thermal denaturation studies (Tm values) indicate that the H220S and H220N mutant enzymes are approximately 5-8 degrees C less stable than the wild-type enzyme, whereas H220E and H220K are 13-24 degrees C less stable than the wild-type enzyme. To analyze the molecular basis for this decreased thermostability, the crystal structures of the H220S, H220N, and H220E mutant enzymes complexed with Mn2+ have been determined at 1.95, 1.90, and 1.75 A, respectively. In the H220S structure, a water molecule effectively replaces the N epsilon-2 atom of the imidazole ring of His-220 and mediates the interaction between Mn2+ at the M2 site and Ser-220. A similar water-mediated interaction between the metal ion and Asn-220 is observed in H220N. No direct or water-mediated interactions between the carboxyl group of Glu-220 and the metal are observed in H220E. Whereas octahedral coordination is maintained for the metal at the M2 site in H220S and H220N, a pentahedral coordination with the metal at the M2 site is observed in H220E. Metal activation measurements support the observation that metal binding is perturbed and is responsible for thermal lability of His-220 mutants.

摘要

红色链霉菌D-木糖异构酶中第220位的组氨酸残基在所有D-木糖异构酶中都是保守的。D-木糖异构酶的三维结构显示,His-220是活性位点中两个金属离子(Mn2+)之一M2的八面体配位球的一部分。这项工作描述了用Ser、Glu、Asn和Lys取代His-220的影响。通过动力学、变性和晶体学方法分析了这些氨基酸取代对酶活性、热稳定性和结构的影响。H220S、H220N和H220E的kcat值仅为野生型值的0.3 - 0.5%,并且这些突变酶的Km值比野生型值增加了30 - 40倍。突变酶H220K未表现出任何可测量的活性。热变性研究(Tm值)表明,H220S和H220N突变酶的稳定性比野生型酶低约5 - 8℃,而H220E和H220K比野生型酶低13 - 24℃。为了分析这种热稳定性降低的分子基础,分别在1.95、1.90和1.75 Å下测定了与Mn2+复合的H220S、H220N和H220E突变酶的晶体结构。在H220S结构中,一个水分子有效地取代了His-220咪唑环的Nε-2原子,并介导了M2位点的Mn2+与Ser-220之间的相互作用。在H220N中观察到金属离子与Asn-220之间类似的水介导相互作用。在H220E中未观察到Glu-220的羧基与金属之间的直接或水介导相互作用。虽然在H220S和H220N中M2位点的金属保持八面体配位,但在H220E中观察到M2位点的金属为五面体配位。金属活化测量结果支持了金属结合受到干扰并导致His-220突变体热不稳定的观察结果。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验