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首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Crystal structure of the middle and C-terminal domains of Hsp90 alpha labeled with a coumarin derivative reveals a potential allosteric binding site as a drug target
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Crystal structure of the middle and C-terminal domains of Hsp90 alpha labeled with a coumarin derivative reveals a potential allosteric binding site as a drug target

机译:晶体结构的中间,c端域的一半α贴上一个香豆素导数揭示潜在的变构绑定网站作为药物的目标

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摘要

The 90 kDa heat-shock protein (Hsp90) is an abundant molecular chaperone that is essential to activate, stabilize and regulate the function of a plethora of client proteins. As drug targets for the treatment of cancer and neurodegenerative diseases, Hsp90 inhibitors that bind to the N-terminal ATP-binding site of Hsp90 have shown disappointing efficacy in clinical trials. Thus, allosteric regulation of the function of Hsp90 by compounds that interact with its middle and C-terminal (MC) domains is now being pursued as a mechanism to inhibit the ATPase activity and client protein-binding activity of Hsp90 without concomitant induction of the heat-shock response. Here, the crystal structure of the Hsp90aMC protein covalently linked to a coumarin derivative, MDCC {7-diethylamino-3[N-(2-maleimidoethyl)carbamoyl)coumarin}, which is located in a hydrophobic pocket that is formed at the Hsp90 alpha MC hexamer interface, is reported. MDCC binding leads to the hexamerization of Hsp90, and the stabilization and conformational changes of three loops that are critical for its function. A fluorescence competition assay demonstrated that other characterized coumarin and isoflavone-containing Hsp90 inhibitors compete with MDCC binding, suggesting that they could bind at a common site or that they might allosterically alter the structure of the MDCC binding site. This study provides insights into the mechanism by which the coumarin class of allosteric inhibitors potentially disrupt the function of Hsp90 by regulating its oligomerization and the burial of interaction sites involved in the ATP-dependent folding of Hsp90 clients. The hydrophobic binding pocket characterized here will provide new structural information for future drug design.
机译:90 kDa热休克蛋白(一半)是一个丰富的分子伴侣,是至关重要的激活,稳定和调节的功能大量的客户蛋白质。治疗癌症和神经退行性疾病,一半抑制剂结合氨基磷酸腺苷一半显示令人失望的功效在临床试验中。变构调节功能的一半化合物与中产阶级和互动c端(MC)域现在被追求抑制atp酶活性和机制客户此种活动的一半伴随的诱导热休克反应。在这里,Hsp90aMC的晶体结构蛋白质共价链接到香豆素导数,MDCC

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