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The RAS-Binding Domain of Human BRAF Protein Serine/Threonine Kinase Exhibits Allosteric Conformational Changes upon Binding HRAS

机译:人BRAF蛋白丝氨酸/苏氨酸激酶的RAS结合域表现出结合HRAS的构构构象变化。

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摘要

RAS binding is a critical step in the activation of BRAF protein serine/threonine kinase and stimulation of the mitogen-activated protein kinase signaling pathway. Mutations in both RAS and BRAF are associated with many human cancers. Here, we report the solution nuclear magnetic resonance (NMR) and X-ray crystal structures of the RAS-binding domain (RBD) from human BRAF. We further studied the complex between BRAF RBD and the GppNHp bound form of HRAS in solution. Backbone, sidechain, and F-19 NMR chemical shift perturbations reveal unexpected changes distal to the RAS-binding face that extend through the core of the RBD structure. Moreover, backbone amide hydrogen/deuterium exchange NMR data demonstrate conformational ensemble changes in the RBD core structure upon complex formation. These changes in BRAF RBD reveal a basis for allosteric regulation of BRAF structure and function, and suggest a mechanism by which RAS binding can signal the drastic domain rearrangements required for activation of BRAF kinase.
机译:RAS结合是激活BRAF蛋白丝氨酸/苏氨酸激酶和刺激丝裂原激活的蛋白激酶信号通路的关键步骤。 RAS和BRAF中的突变均与许多人类癌症相关。在这里,我们报告人类BRAF的解决方案核磁共振(NMR)和RAS结合域(RBD)的X射线晶体结构。我们进一步研究了BRAF RBD和HRAS的GppNHp结合形式之间的复合物。骨干,侧链和F-19 NMR化学位移扰动揭示了RAS结合面远端延伸到RBD结构核心的意外变化。此外,骨架酰胺氢/氘交换NMR数据表明,在形成复合物后,RBD核心结构的构象整体变化。 BRAF RBD的这些变化揭示了BRAF结构和功能的变构调节的基础,并提出了RAS结合可以发信号激活BRAF激酶所需的剧烈结构域重排的机制。

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