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NECA 衍生物利用了内质网 HSP90 伴侣蛋白 Grp94 第 3 侧袋位点的旁系同源特异性。

NECA derivatives exploit the paralog-specific properties of the site 3 side pocket of Grp94, the endoplasmic reticulum Hsp90.

机构信息

Hauptman-Woodward Medical Research Institute, Buffalo, New York 14203.

Department of Structural Biology, University at Buffalo, Buffalo, New York 14203.

出版信息

J Biol Chem. 2019 Nov 1;294(44):16010-16019. doi: 10.1074/jbc.RA119.009960. Epub 2019 Sep 9.

Abstract

The hsp90 chaperones govern the function of essential client proteins critical for normal cell function as well as cancer initiation and progression. Hsp90 activity is driven by ATP, which binds to the N-terminal domain and induces large conformational changes that are required for client maturation. Inhibitors targeting the ATP-binding pocket of the N-terminal domain have anticancer effects, but most bind with similar affinity to cytosolic Hsp90α and Hsp90β, endoplasmic reticulum Grp94, and mitochondrial Trap1, the four cellular hsp90 paralogs. Paralog-specific inhibitors may lead to drugs with fewer side effects. The ATP-binding pockets of the four paralogs are flanked by three side pockets, termed sites 1, 2, and 3, which differ between the paralogs in their accessibility to inhibitors. Previous insights into the principles governing access to sites 1 and 2 have resulted in development of paralog-selective inhibitors targeting these sites, but the rules for selective targeting of site 3 are less clear. Earlier studies identified 5'-ethylcarboxamido adenosine (NECA) as a Grp94-selective ligand. Here we use NECA and its derivatives to probe the properties of site 3. We found that derivatives that lengthen the 5' moiety of NECA improve selectivity for Grp94 over Hsp90α. Crystal structures reveal that the derivatives extend further into site 3 of Grp94 compared with their parent compound and that selectivity is due to paralog-specific differences in ligand pose and ligand-induced conformational strain in the protein. These studies provide a structural basis for Grp94-selective inhibition using site 3.

摘要

热休克蛋白 90(Hsp90)伴侣蛋白调控着关键客户蛋白的功能,这些蛋白对于正常细胞功能以及癌症的发生和进展至关重要。Hsp90 的活性受 ATP 驱动,ATP 与 N 端结构域结合,并诱导必需的构象变化,以促进客户蛋白成熟。靶向 N 端结构域 ATP 结合口袋的抑制剂具有抗癌作用,但大多数抑制剂与细胞质 Hsp90α 和 Hsp90β、内质网 Grp94 和线粒体 Trap1(四种细胞 Hsp90 同源物)具有相似的亲和力。具有特异性的抑制剂可能会产生副作用更小的药物。四个同源物的 ATP 结合口袋周围有三个侧袋,分别称为 1 号、2 号和 3 号位点,这些位点在抑制剂的可及性方面在同源物之间存在差异。先前对控制进入 1 号和 2 号位点的原理的深入了解导致了针对这些位点的同源物选择性抑制剂的开发,但对 3 号位点选择性靶向的规则还不太清楚。早期的研究确定了 5'-乙基羧酰胺腺苷(NECA)是 Grp94 的选择性配体。在这里,我们使用 NECA 及其衍生物来探测 3 号位点的特性。我们发现,延长 NECA 的 5'部分的衍生物可提高其对 Grp94 的选择性,优于 Hsp90α。晶体结构表明,与母体化合物相比,这些衍生物在 Grp94 中的 3 号位点延伸更远,并且选择性是由于配体构象和配体诱导的蛋白构象应变在同源物之间的特异性差异所致。这些研究为使用 3 号位点进行 Grp94 选择性抑制提供了结构基础。

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