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Toward the physical basis of thermophilic proteins: linking of enriched polar interactions and reduced heat capacity of unfolding.

机译:迈向嗜热蛋白的物理基础:丰富的极性相互作用与降低的展开热容量的联系。

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摘要

The enrichment of salt bridges and hydrogen bonding in thermophilic proteins has long been recognized. Another tendency, featuring lower heat capacity of unfolding (DeltaC(p)) than found in mesophilic proteins, is emerging from the recent literature. Here we present a simple electrostatic model to illustrate that formation of a salt-bridge or hydrogen-bonding network around an ionized group in the folded state leads to increased folding stability and decreased DeltaC(p). We thus suggest that the reduced DeltaC(p) of thermophilic proteins could partly be attributed to enriched polar interactions. A reduced DeltaC(p) might serve as an indicator for the contribution of polar interactions to folding stability.
机译:早已认识到嗜热蛋白中盐桥的富集和氢键的存在。最近的文献中出现了另一种趋势,即比在嗜温蛋白中发现的更低的展开热容量(DeltaC(p))。在这里,我们提供一个简单的静电模型来说明在折叠状态下围绕离子化基团形成盐桥或氢键网络会导致折叠稳定性增加和DeltaC(p)降低。因此,我们建议减少嗜热蛋白的DeltaC(p)可以部分归因于丰富的极性相互作用。降低的DeltaC(p)可以用作极性相互作用对折叠稳定性的贡献的指标。

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