Small-molecule and mutational analysis of allosteric Eg5 inhibition by monastrol.

Zoltan Maliga, Timothy J Mitchison
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引用次数: 87

Abstract

Background: A recent crystal structure of monastrol in a ternary complex with the kinesin Eg5 motor domain highlights a novel, induced-fit drug binding site at atomic resolution. Mutational obliteration of the monastrol binding site results in a monastrol-resistant, but otherwise catalytically active Eg5 motor domain. However, considering the conformational changes at this site, it is unclear what specific interactions stabilize the interaction between monastrol and the Eg5 motor domain.

Results: To study the molecular complementarity of the monastrol-Eg5 interaction, we used a combination of synthetic chemistry and targeted mutations in Eg5 to measure the contribution of specific contacts to inhibition of Eg5 in vitro and in cultured cells. Structure-activity data on chemical derivatives, sequence analysis of Eg5 homologs from different species, and the effect of mutations near the drug binding site were consistent with the crystal structure.

Conclusion: The mechanism of monastrol revealed by our data rationalizes its specificity for Eg5 over other kinesins and highlights a potential mechanism of drug resistance for anti-cancer therapy targeting this site in Eg5.

Abstract Image

Abstract Image

Abstract Image

monastrol抑制变构性Eg5的小分子和突变分析。
背景:最近的一项研究表明,单甾体甾醇在一个具有酪蛋白Eg5运动结构域的三元配合物中的晶体结构,在原子分辨率上突出了一个新的、诱导的药物结合位点。单雌醇结合位点的突变缺失导致单雌醇耐药,但具有催化活性的Eg5马达结构域。然而,考虑到该位点的构象变化,目前尚不清楚是什么特定的相互作用稳定了monastrol和Eg5马达结构域之间的相互作用。结果:为了研究monastrol-Eg5相互作用的分子互补性,我们使用了合成化学和Eg5靶向突变相结合的方法来测量特异性接触对体外和培养细胞中Eg5抑制的贡献。化学衍生物的结构-活性数据、不同物种的Eg5同源物的序列分析以及药物结合位点附近突变的影响与晶体结构一致。结论:我们的数据揭示了monastrol对Eg5的特异性优于其他激酶的机制,并强调了针对Eg5中该位点的抗癌治疗的潜在耐药机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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