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In silico Evaluation of Crosslinking Effects on Denaturant meq values and ΔCp upon Protein Unfolding

机译:在计算机上评估交联剂对变性剂的影响蛋白质解折叠时的eq值和ΔCp

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摘要

Important thermodynamic parameters including denaturant equilibrium m values (m eq) and heat capacity changes (ΔCp) can be predicted based on changes in Solvent Accessible Surface Area (SASA) upon unfolding. Crosslinks such as disulfide bonds influence the stability of the proteins by decreasing the entropy gain as well as reduction of SASA of unfolded state. The aim of the study was to develop mathematical models to predict the effect of crosslinks on ΔSASA and ultimately on m eq and ΔCp based on in silico methods. Changes of SASA upon computationally simulated unfolding were calculated for a set of 45 proteins with known m eq and ΔCp values and the effect of crosslinks on ΔSASA of unfolding was investigated. The results were used to predict the m eq of denaturation for guanidine hydrochloride and urea, as well as ΔCp for the studied proteins with overall error of 20%, 31% and 17%, respectively. The results of the current study were in close agreement with those obtained from the previous studies.
机译:可以基于展开时溶剂可及表面积(SASA)的变化来预测重要的热力学参数,包括变性平衡m值(m eq)和热容量变化(ΔCp)。诸如二硫键之类的交联通过降低熵增益以及降低未折叠状态的SASA来影响蛋白质的稳定性。该研究的目的是基于计算机模拟方法,开发数学模型来预测交联对ΔSASA以及最终对m eq和ΔCp的影响。对于一组45种具有已知meq和ΔCp值的蛋白质,通过计算模拟的解折叠计算了SASA的变化,并研究了交联对解折叠ΔSASA的影响。结果可用于预测盐酸胍和尿素的变性m eq 以及所研究蛋白质的ΔCp,总误差为20%,31%和17 %, 分别。当前研究的结果与以前的研究结果非常吻合。

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