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一种嗜冷几丁质酶的TIM桶状结构域的稳定性

The stability of the TIM-barrel domain of a psychrophilic chitinase.

作者信息

Stavros Philemon, Malecki Piotr H, Theodoridou Maria, Rypniewski Wojciech, Vorgias Constantinos E, Nounesis George

机构信息

Biomolecular Physics Laboratory, INRASTES, National Centre for Scientific Research "Demokritos", 153 10 Aghia Paraskevi, Greece.

Physics Department, National and Kapodistrian University of Athens, 157 01 Zografou, Greece.

出版信息

Biochem Biophys Rep. 2015 Jul 30;3:108-116. doi: 10.1016/j.bbrep.2015.07.016. eCollection 2015 Sep.

Abstract

Chitinase 60 from the psychrophilic bacterium Moritella marina (MmChi60) is a four-domain protein whose structure revealed flexible hinge regions between the domains, yielding conformations in solution that range from fully extended to compact. The catalytic domain is a shallow-grooved TIM-barrel. Heat-induced denaturation experiments of the wild-type and mutants resulting from the deletions of the two-Ig-like domains and the chitin binding domain reveal calorimetric profiles that are consistent with non-collaborative thermal unfolding of the individual domains, a property that must be associated to the "hinge-regions". The calorimetric measurements of the (α) catalytic domain reveal that the thermal unfolding is a slow-relaxation transition exhibiting a stable, partially structured intermediate state. Circular dichroism provides evidence that the intermediate exhibits features of a molten globule i.e., loss of tertiary structure while maintaining the secondary structural elements of the native. GdnHCl-induced denaturation studies of the TIM-barrel demonstrate an extraordinarily high resistance to the denaturant. Slow-relaxation kinetics characterize the unfolding with equilibration times exceeding six days, a property that is for the first time observed for a psychrophilic TIM barrel. On the other hand, the thermodynamic stability is Δ=6.75±1.3 kcal/mol, considerably lower than for structural-insertions-containing barrels. The mutant E153Q used for the crystallographic studies of MmChi60 complexes with NAG ligands has a much lower stability than the wild-type.

摘要

来自嗜冷细菌海栖莫里塔氏菌(MmChi60)的几丁质酶60是一种四结构域蛋白,其结构显示结构域之间存在灵活的铰链区,在溶液中产生从完全伸展到紧凑的构象。催化结构域是一个浅槽TIM桶。对野生型以及缺失两个免疫球蛋白样结构域和几丁质结合结构域后的突变体进行热诱导变性实验,结果显示量热曲线与各个结构域的非协同热解折叠一致,这种特性一定与“铰链区”有关。对(α)催化结构域的量热测量表明,热解折叠是一个缓慢弛豫转变,呈现出一个稳定的、部分结构化的中间态。圆二色性提供了证据,表明该中间体呈现出熔球态的特征,即三级结构丧失而同时保留天然二级结构元件。对TIM桶进行盐酸胍诱导的变性研究表明,其对变性剂具有极高的抗性。缓慢弛豫动力学表征了解折叠过程,平衡时间超过六天,这是首次在嗜冷TIM桶中观察到的特性。另一方面,其热力学稳定性为Δ=6.75±1.3千卡/摩尔,远低于含有结构插入物的桶。用于MmChi60与NAG配体复合物晶体学研究的突变体E153Q的稳定性远低于野生型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d58/5668695/4a375c25547f/gr1.jpg

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