Yan Youwei, Sardana Vinod, Xu Bei, Homnick Carl, Halczenko Wasyl, Buser Carolyn A, Schaber Michael, Hartman George D, Huber Hans E, Kuo Lawrence C
Merck Research Laboratories, West Point, PA 19486, USA.
J Mol Biol. 2004 Jan 9;335(2):547-54. doi: 10.1016/j.jmb.2003.10.074.
We report here the first inhibitor-bound structure of a mitotic motor protein. The 1.9 A resolution structure of the motor domain of KSP, bound with the small molecule monastrol and Mg2+ x ADP, reveals that monastrol confers inhibition by "induced-fitting" onto the protein some 12 A away from the catalytic center of the enzyme, resulting in the creation of a previously non-existing binding pocket. The structure provides new insights into the biochemical and mechanical mechanisms of the mitotic motor domain. Inhibition of KSP provides a novel mechanism to arrest mitotic spindle formation, a target of several approved and investigative anti-cancer agents. The structural information gleaned from this novel pocket offers a new angle for the design of anti-mitotic agents.
我们在此报告有丝分裂运动蛋白与抑制剂结合的首个结构。KSP运动结构域与小分子单甲脒及Mg2+ x ADP结合,分辨率为1.9埃的结构表明,单甲脒通过“诱导契合”作用在距离酶催化中心约12埃处对蛋白质产生抑制,从而形成了一个先前不存在的结合口袋。该结构为有丝分裂运动结构域的生化和机械机制提供了新见解。抑制KSP为阻止有丝分裂纺锤体形成提供了一种新机制,有丝分裂纺锤体是几种已获批和正在研究的抗癌药物的靶点。从这个新口袋中收集到的结构信息为抗有丝分裂药物的设计提供了新视角。