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关于高盐和低盐CK2α复合物结构所暗示的卤键在蛋白激酶/抑制剂识别中作用的警示说明

A Note of Caution on the Role of Halogen Bonds for Protein Kinase/Inhibitor Recognition Suggested by High- And Low-Salt CK2α Complex Structures.

作者信息

Guerra Barbara, Bischoff Nils, Bdzhola Volodymyr G, Yarmoluk Sergiy M, Issinger Olaf-Georg, Golub Andriy G, Niefind Karsten

机构信息

†University of Southern Denmark, Department of Biochemistry and Molecular Biology, Campusvej 55, DK-5230 Odense, Denmark.

‡University of Cologne, Institute of Biochemistry, Otto-Fischer-Str. 12-14, D-50674 Cologne, Germany.

出版信息

ACS Chem Biol. 2015 Jul 17;10(7):1654-60. doi: 10.1021/acschembio.5b00235. Epub 2015 May 15.

Abstract

CK2 is a Ser/Thr kinase recruited by tumor cells to avoid cell death. 4'-Carboxy-6,8-dibromo-flavonol (FLC26) is a nanomolar CK2 inhibitor reducing the physiological phosphorylation of CK2 biomarkers and inducing cell death. Its binding mode to the ATP site was predicted to depend primarily on noncovalent interactions not comprising halogen bonds. We confirm this by two independent cocrystal structures which additionally show that FLC26 is selective for an open, protein kinase-untypical conformation of the hinge/helix αD region. The structures suggest how the bromo substituents, found previously in lead optimization studies, contribute to the inhibitory efficacy. In this context, one of the complex structures, obtained by crystallization with the kosmotropic salt NaCl, revealed an unconventional π-halogen bond between the 8-bromo substituent of FLC26 and an aromatic side chain which is absent under low-salt conditions. The kosmotropic salt sensitivity of π-halogen bonds is a novel feature which requires attention in structural comparisons and halogen-bond-based explanations.

摘要

CK2是一种被肿瘤细胞募集以避免细胞死亡的丝氨酸/苏氨酸激酶。4'-羧基-6,8-二溴黄酮醇(FLC26)是一种纳摩尔级的CK2抑制剂,可降低CK2生物标志物的生理磷酸化并诱导细胞死亡。据预测,其与ATP位点的结合模式主要取决于不包括卤键的非共价相互作用。我们通过两个独立的共晶体结构证实了这一点,这两个结构还表明FLC26对铰链/螺旋αD区域的开放、蛋白激酶非典型构象具有选择性。这些结构揭示了先前在先导优化研究中发现的溴取代基是如何有助于提高抑制效果的。在此背景下,通过与促盐析盐氯化钠结晶获得的一种复杂结构,揭示了FLC26的8-溴取代基与一个芳香侧链之间存在一种非常规的π-卤键,而在低盐条件下这种键不存在。π-卤键对促盐析盐的敏感性是一个新特征,在结构比较和基于卤键的解释中需要予以关注。

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