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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Thermodynamic analysis of interactions of the Hsp90 with adenosine nucleotides: A comparative perspective
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Thermodynamic analysis of interactions of the Hsp90 with adenosine nucleotides: A comparative perspective

机译:HSP90与腺苷核苷酸相互作用的热力学分析:比较视角

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Hsp90s are key proteins in cellular homeostasis since they interact with many client proteins. Several studies indicated that Hsp9Os are potential targets for treating diseases, such as cancer or malaria. It has been shown that Hsp9Os from different organisms have peculiarities despite their high sequence identity. Therefore, a detailed comparative analysis of several Hsp90 proteins is relevant to the overall understanding of their activity. Accordingly, the goal of this work was to evaluate the interaction of either ADP or ATP with recombinant Hsp9Os from different organisms ( human et and (3 isoforms, Plasmodium falciparum, Leishmania braziliensis, yeast and sugarcane) by isothermal titration calorimetry. The measured thermodynamic signatures of those interactions indicated that despite the high identity among all Hsp90s, they have specific thermodynamic characteristics. Specifically, the interactions with ADP are driven by enthalpy but are opposed by entropy, whereas the interaction with ATP is driven by both enthalpy and entropy. Complimentary structural and molecular dynamics studies suggested that specific interactions with ADP that differ from those with ATP may contribute to the observed enthalpies and entropies. Altogether, the data suggest that selective inhibition may be more easily achieved using analogues of the Hsp90-ADP bound state than those of Hsp90-ATP bound state. (C) 2019 Elsevier B.V. All rights reserved.
机译:HSP90S是细胞稳态中的关键蛋白,因为它们与许多客户蛋白相互作用。几项研究表明,HSP9OS是治疗疾病的潜在目标,例如癌症或疟疾。已经表明,尽管其高序列同一性,来自不同生物的Hsp9OS具有特殊性。因此,对几种HSP90蛋白的详细比较分析与对其活动的整体理解有关。因此,本作作品的目的是评估ADP或ATP与来自不同生物(人ET和(3同种型,疟原虫,LeishMania Braziliensis,酵母和甘蔗)的重组Hsp9Os的相互作用通过等温滴定热量测定。测量的热力学签名这些相互作用表明,尽管所有HSP90s之间的身份高,但它们具有特定的热力学特性。具体而言,与ADP的相互作用是由焓驱动的,但是由熵相对,而与ATP的相互作用是由焓和熵驱动的。互动和分子动力学研究表明,与ATP那些不同的ADP的具体相互作用可能有助于观察到的焓和熵。通过HSP90-ADP结合状态的类似物可以更容易地实现选择性抑制比HSP90-ATP绑定状态。(c)2019 Elsevier BV所有权利储备编辑。

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