Influence of C-terminal tail deletion on structure and stability of hyperthermophile Sulfolobus tokodaii RNase HI

被引:0
|
作者
Lin Chen
Ji-Long Zhang
Qing-Chuan Zheng
Wen-Ting Chu
Qiao Xue
Hong-Xing Zhang
Chia-Chung Sun
机构
[1] Jilin University,State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry
来源
Journal of Molecular Modeling | 2013年 / 19卷
关键词
Essential dynamics; Hyperthermophilic protein; Molecular dynamics; Thermal stability; Unfolding pathway;
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中图分类号
学科分类号
摘要
The C-terminus tail (G144-T149) of the hyperthermophile Sulfolobus tokodaii (Sto-RNase HI) plays an important role in this protein’s hyperstabilization and may therefore be a good protein stability tag. Detailed understanding of the structural and dynamic effects of C-terminus tail deletion is required for gaining insights into the thermal stability mechanism of Sto-RNase HI. Focused on Sulfolobus tokodaii RNase HI (Sto-RNase HI) and its derivative lacking the C-terminal tail (ΔC6 Sto-RNase HI) (PDB codes: 2EHG and 3ALY), we applied molecular dynamics (MD) simulations at four different temperatures (300, 375, 475, and 500 K) to examine the effect of the C-terminal tail on the hyperstabilization of Sto-RNase HI and to investigate the unfolding process of Sto-RNase HI and ΔC6 Sto-RNase HI. The simulations suggest that the C-terminal tail has significant impact in hyperstabilization of Sto-RNase HI and the unfolding of these two proteins evolves along dissimilar pathways. Essential dynamics analysis indicates that the essential subspaces of the two proteins at different temperatures are non-overlapping within the trajectories and they exhibit different directions of motion. Our work can give important information to understand the three-state folding mechanism of Sto-RNase HI and to offer alternative strategies to improve the protein stability.
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页码:2647 / 2656
页数:9
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