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对低温的结构适应性——寡聚嗜冷酶亚基界面分析

Structural adaptation to low temperatures--analysis of the subunit interface of oligomeric psychrophilic enzymes.

作者信息

Tronelli Daniele, Maugini Elisa, Bossa Francesco, Pascarella Stefano

机构信息

Dipartimento di Scienze Biochimiche 'A. Rossi Fanelli', Università degli Studi di Roma 'La Sapienza', Rome, Italy.

出版信息

FEBS J. 2007 Sep;274(17):4595-608. doi: 10.1111/j.1742-4658.2007.05988.x. Epub 2007 Aug 14.

DOI:10.1111/j.1742-4658.2007.05988.x
PMID:17697122
Abstract

Enzymes from psychrophiles show higher catalytic efficiency in the 0-20 degrees C temperature range and often lower thermostability in comparison with meso/thermophilic homologs. Physical and chemical characterization of these enzymes is currently underway in order to understand the molecular basis of cold adaptation. Psychrophilic enzymes are often characterized by higher flexibility, which allows for better interaction with substrates, and by a lower activation energy requirement in comparison with meso/thermophilic counterparts. In their tertiary structure, psychrophilic enzymes present fewer stabilizing interactions, longer and more hydrophilic loops, higher glycine content, and lower proline and arginine content. In this study, a comparative analysis of the structural characteristics of the interfaces between oligomeric psychrophilic enzyme subunits was carried out. Crystallographic structures of oligomeric psychrophilic enzymes, and their meso/thermophilic homologs belonging to five different protein families, were retrieved from the Protein Data Bank. The following structural parameters were calculated: overall and core interface area, characterization of polar/apolar contributions to the interface, hydrophobic contact area, quantity of ion pairs and hydrogen bonds between monomers, internal area and total volume of non-solvent-exposed cavities at the interface, and average packing of interface residues. These properties were compared to those of meso/thermophilic enzymes. The results were analyzed using Student's t-test. The most significant differences between psychrophilic and mesophilic proteins were found in the number of ion pairs and hydrogen bonds, and in the apolarity of their subunit interface. Interestingly, the number of ion pairs at the interface shows an opposite adaptation to those occurring at the monomer core and surface.

摘要

嗜冷菌的酶在0-20摄氏度温度范围内表现出更高的催化效率,与中温/嗜热同源物相比,其热稳定性通常较低。目前正在对这些酶进行物理和化学表征,以了解冷适应的分子基础。嗜冷酶的特点通常是具有更高的灵活性,这使其能与底物更好地相互作用,并且与中温/嗜热对应物相比,其活化能需求更低。在三级结构上,嗜冷酶的稳定相互作用较少,环更长且更亲水,甘氨酸含量更高,脯氨酸和精氨酸含量更低。在本研究中,对寡聚嗜冷酶亚基之间界面的结构特征进行了比较分析。从蛋白质数据库中检索了属于五个不同蛋白质家族的寡聚嗜冷酶及其中温/嗜热同源物的晶体结构。计算了以下结构参数:整体和核心界面面积、界面极性/非极性贡献的表征、疏水接触面积、单体之间离子对和氢键的数量、界面处非溶剂暴露腔的内部面积和总体积,以及界面残基的平均堆积情况。将这些特性与中温/嗜热酶的特性进行了比较。使用学生t检验对结果进行了分析。在嗜冷蛋白和中温蛋白之间发现的最显著差异在于离子对和氢键的数量,以及它们亚基界面的非极性。有趣的是,界面处离子对的数量与单体核心和表面处的离子对呈现相反的适应性变化。

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