首页> 外文期刊>Journal of molecular modeling >Influence of C-terminal tail deletion on structure and stability of hyperthermophile Sulfolobus tokodaii RNase HI
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Influence of C-terminal tail deletion on structure and stability of hyperthermophile Sulfolobus tokodaii RNase HI

机译:C末端尾部缺失对嗜热嗜热线粒体Tokodaii RNase HI的结构和稳定性的影响

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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.
机译:嗜热嗜盐菌Stocolobus tokodaii(Sto-RNase HI)的C末端尾巴(G144-T149)在该蛋白质的超稳定化中起重要作用,因此可能是良好的蛋白质稳定性标签。要深入了解Sto-RNase HI的热稳定性机制,需要对C末端尾部缺失的结构和动力学效应有详细的了解。着眼于Sulfolobus tokodaii RNase HI(Sto-RNase HI)及其缺乏C末端尾巴的衍生物(ΔC6Sto-RNase HI)(PDB代码:2EHG和3ALY),我们在四个不同温度下应用了分子动力学(MD)模拟( 300、375、475和500 K)以检查C末端尾部对Sto-RNase HI超稳定的影响,并研究Sto-RNase HI和ΔC6Sto-RNase HI的展开过程。模拟表明,C末端尾巴对Sto-RNase HI的高度稳定有重要影响,并且这两种蛋白质的展开沿不同的途径进化。本质动力学分析表明,两种蛋白质在不同温度下的本质子空间在轨迹内不重叠,并且表现出不同的运动方向。我们的工作可以提供重要的信息,以了解Sto-RNase HI的三态折叠机制,并提供提高蛋白质稳定性的替代策略。

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