Department of Biochemistry, Brandeis University, Waltham, MA 02454.
Howard Hughes Medical Institute, Brandeis University, Waltham, MA 02454.
Proc Natl Acad Sci U S A. 2019 Jul 9;116(28):13937-13942. doi: 10.1073/pnas.1906024116. Epub 2019 Jun 25.
Despite being the subject of intense effort and scrutiny, kinases have proven to be consistently challenging targets in inhibitor drug design. A key obstacle has been promiscuity and consequent adverse effects of drugs targeting the ATP binding site. Here we introduce an approach to controlling kinase activity by using monobodies that bind to the highly specific regulatory allosteric pocket of the oncoprotein Aurora A (AurA) kinase, thereby offering the potential for more specific kinase modulators. Strikingly, we identify a series of highly specific monobodies acting either as strong kinase inhibitors or activators via differential recognition of structural motifs in the allosteric pocket. X-ray crystal structures comparing AurA bound to activating vs inhibiting monobodies reveal the atomistic mechanism underlying allosteric modulation. The results reveal 3 major advantages of targeting allosteric vs orthosteric sites: extreme selectivity, ability to inhibit as well as activate, and avoidance of competing with ATP that is present at high concentrations in the cells. We envision that exploiting allosteric networks for inhibition or activation will provide a general, powerful pathway toward rational drug design.
尽管激酶一直是人们努力和深入研究的对象,但它们在抑制剂药物设计中一直是具有挑战性的靶点。一个关键的障碍是药物靶向 ATP 结合位点的混杂性和随之而来的不良反应。在这里,我们介绍了一种通过使用单域抗体来控制激酶活性的方法,该单域抗体可以结合癌蛋白 Aurora A (AurA) 激酶的高度特异性调节变构口袋,从而为更特异性的激酶调节剂提供了潜力。引人注目的是,我们鉴定了一系列高度特异性的单域抗体,它们通过对变构口袋中结构基序的差异识别,作为强效的激酶抑制剂或激活剂发挥作用。比较 AurA 与激活或抑制单域抗体结合的 X 射线晶体结构揭示了变构调节的原子机制。结果表明,与靶向变构位点相比,靶向 orthosteric 位点具有 3 个主要优势:极高的选择性、既能抑制又能激活的能力,以及避免与细胞中高浓度存在的 ATP 竞争。我们设想,利用变构网络进行抑制或激活将为合理药物设计提供一种通用、强大的途径。