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槲皮苷作为p90核糖体S6激酶(RSK)抑制剂的鉴定:其与RSK2 N端结构域复合物在1.8 Å分辨率下的结构。

Identification of quercitrin as an inhibitor of the p90 S6 ribosomal kinase (RSK): structure of its complex with the N-terminal domain of RSK2 at 1.8 Å resolution.

作者信息

Derewenda Urszula, Artamonov Mykhaylo, Szukalska Gabriela, Utepbergenov Darkhan, Olekhnovich Natalya, Parikh Hardik I, Kellogg Glen E, Somlyo Avril V, Derewenda Zygmunt S

机构信息

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, VA 22908-0736, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Feb;69(Pt 2):266-75. doi: 10.1107/S0907444912045520. Epub 2013 Jan 19.

Abstract

Members of the RSK family of kinases constitute attractive targets for drug design, but a lack of structural information regarding the mechanism of selective inhibitors impedes progress in this field. The crystal structure of the N-terminal kinase domain (residues 45-346) of mouse RSK2, or RSK2(NTKD), has recently been described in complex with one of only two known selective inhibitors, a rare naturally occurring flavonol glycoside, kaempferol 3-O-(3'',4''-di-O-acetyl-α-L-rhamnopyranoside), known as SL0101. Based on this structure, it was hypothesized that quercitrin (quercetin 3-O-α-L-rhamnopyranoside), a related but ubiquitous and inexpensive compound, might also act as an RSK inhibitor. Here, it is demonstrated that quercitrin binds to RSK2(NTKD) with a dissociation constant (K(d)) of 5.8 µM as determined by isothermal titration calorimetry, and a crystal structure of the binary complex at 1.8 Å resolution is reported. The crystal structure reveals a very similar mode of binding to that recently reported for SL0101. Closer inspection shows a number of small but significant differences that explain the slightly higher K(d) for quercitrin compared with SL0101. It is also shown that quercitrin can effectively substitute for SL0101 in a biological assay, in which it significantly suppresses the contractile force in rabbit pulmonary artery smooth muscle in response to Ca(2+).

摘要

核糖体S6激酶(RSK)家族的成员是药物设计中颇具吸引力的靶点,但缺乏关于选择性抑制剂作用机制的结构信息阻碍了该领域的进展。小鼠RSK2的N端激酶结构域(第45至346位氨基酸残基),即RSK2(NTKD)的晶体结构,最近被报道与仅有的两种已知选择性抑制剂之一形成复合物,该抑制剂是一种罕见的天然黄酮醇糖苷,山奈酚3 - O - (3'',4'' - 二 - O - 乙酰基 - α - L - 鼠李糖苷),即SL0101。基于此结构,有人推测槲皮苷(槲皮素3 - O - α - L - 鼠李糖苷),一种相关但普遍存在且价格低廉的化合物,可能也作为RSK抑制剂起作用。在此,通过等温滴定量热法测定表明,槲皮苷以5.8 μM的解离常数(K(d))与RSK2(NTKD)结合,并报道了二元复合物在1.8 Å分辨率下的晶体结构。晶体结构揭示了其与最近报道的SL0101的结合模式非常相似。进一步观察发现一些小但显著的差异,这些差异解释了槲皮苷的K(d)比SL0101略高的原因。还表明,在生物学测定中,槲皮苷可以有效地替代SL0101,在该测定中它能显著抑制兔肺动脉平滑肌对Ca(2+)的收缩力。

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