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The Crystal Structure of a Streptomyces thermoviolaceus Thermophilic Chitinase Known for Its Refolding Efficiency

机译:链霉菌嗜热几丁质酶的晶体结构以其重折叠效率而闻名

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摘要

Analyzing the structure of proteins from extremophiles is a promising way to study the rules governing the protein structure, because such proteins are results of structural and functional optimization under well-defined conditions. Studying the structure of chitinases addresses an interesting aspect of enzymology, because chitin, while being the world’s second most abundant biopolymer, is also a recalcitrant substrate. The crystal structure of a thermostable chitinase from ( Chi40) has been solved revealing a β/α-barrel (TIM-barrel) fold with an α+β insertion domain. This is the first chitinase structure of the multi-chitinase system of . The protein is also known to refold efficiently after thermal or chemical denaturation. Chi40 is structurally close to the catalytic domain of psychrophilic chitinase B from TAD20. Differences are noted in comparison to the previously examined chitinases, particularly in the substrate-binding cleft. A comparison of the thermophilic enzyme with its psychrophilic homologue revealed structural features that could be attributed to Chi40’s thermal stability: compactness of the structure with trimmed surface loops and unique disulfide bridges, one of which is additionally stabilized by S–π interactions with aromatic rings. Uncharacteristically for thermophilic proteins, Chi40 has fewer salt bridges than its mesophilic and psychrophilic homologues.
机译:分析来自极端微生物的蛋白质的结构是研究控制蛋白质结构规则的有前途的方法,因为这类蛋白质是在明确条件下进行结构和功能优化的结果。研究几丁质酶的结构解决了酶学的一个有趣方面,因为几丁质虽然是世界上第二大生物聚合物,但也是顽固的底物。来自(Chi40)的热稳定几丁质酶的晶体结构已被解析,揭示了具有α+β插入域的β/α桶(TIM桶)折叠。这是的多聚几丁质酶系统的第一个几丁质酶结构。还已知该蛋白质在热或化学变性后能有效地重折叠。 Chi40在结构上接近TAD20的嗜冷性几丁质酶B的催化结构域。与先前检查的几丁质酶相比,存在差异,特别是在与底物结合的裂隙中。将嗜热酶与其嗜热同系物进行比较后,发现其结构特征可归因于Chi40的热稳定性:具有修整的表面环和独特的二硫键的结构致密性,其中之一通过与芳环的S-π相互作用得以稳定。与嗜热蛋白不同,Chi40具有比其嗜温和嗜冷同源物更少的盐桥。

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