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芳基二羟苯基噻二唑与人热休克蛋白 90 的结合热力学。

Thermodynamics of aryl-dihydroxyphenyl-thiadiazole binding to human Hsp90.

机构信息

Department of Biothermodynamics and Drug Design, Vilnius University Institute of Biotechnology, Vilnius, Lithuania.

出版信息

PLoS One. 2012;7(5):e36899. doi: 10.1371/journal.pone.0036899. Epub 2012 May 24.

Abstract

The design of specific inhibitors against the Hsp90 chaperone and other enzyme relies on the detailed and correct understanding of both the thermodynamics of inhibitor binding and the structural features of the protein-inhibitor complex. Here we present a detailed thermodynamic study of binding of aryl-dihydroxyphenyl-thiadiazole inhibitor series to recombinant human Hsp90 alpha isozyme. The inhibitors are highly potent, with the intrinsic K(d) approximately equal to 1 nM as determined by isothermal titration calorimetry (ITC) and thermal shift assay (TSA). Dissection of protonation contributions yielded the intrinsic thermodynamic parameters of binding, such as enthalpy, entropy, Gibbs free energy, and the heat capacity. The differences in binding thermodynamic parameters between the series of inhibitors revealed contributions of the functional groups, thus providing insight into molecular reasons for improved or diminished binding efficiency. The inhibitor binding to Hsp90 alpha primarily depended on a large favorable enthalpic contribution combined with the smaller favorable entropic contribution, thus suggesting that their binding was both enthalpically and entropically optimized. The enthalpy-entropy compensation phenomenon was highly evident when comparing the inhibitor binding enthalpies and entropies. This study illustrates how detailed thermodynamic analysis helps to understand energetic reasons for the binding efficiency and develop more potent inhibitors that could be applied for therapeutic use as Hsp90 inhibitors.

摘要

针对 Hsp90 伴侣蛋白和其他酶的特异性抑制剂的设计依赖于对抑制剂结合的热力学和蛋白质-抑制剂复合物的结构特征的详细和正确理解。在这里,我们呈现了对芳基二羟基苯基噻二唑抑制剂系列与重组人 Hsp90 alpha 同工酶结合的详细热力学研究。这些抑制剂具有很高的效力,通过等温滴定量热法(ITC)和热位移测定法(TSA)测定,其内在 K(d)约等于 1 nM。质子化贡献的剖析得出了结合的内在热力学参数,例如焓、熵、吉布斯自由能和热容。抑制剂系列之间结合热力学参数的差异揭示了功能基团的贡献,从而为提高或降低结合效率的分子原因提供了深入的了解。抑制剂与 Hsp90 alpha 的结合主要取决于大的有利焓贡献,加上较小的有利熵贡献,因此表明它们的结合在焓和熵上都得到了优化。当比较抑制剂结合焓和熵时,焓熵补偿现象非常明显。这项研究说明了详细的热力学分析如何帮助理解结合效率的能量原因,并开发出更有效的抑制剂,可作为 Hsp90 抑制剂应用于治疗。

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