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脂质膜中与K-Ras4B相互作用的Raf亚型的空间组织特征

Characterization of the Spatial Organization of Raf Isoforms Interacting with K-Ras4B in the Lipid Membrane.

作者信息

Li Lei, Möbitz Simone, Winter Roland

机构信息

Faculty of Chemistry and Chemical Biology, Physical Chemistry I-Biophysical Chemistry, TU Dortmund University, Otto-Hahn-Str. 4a, D-44227 Dortmund, Germany.

出版信息

Langmuir. 2020 Jun 2;36(21):5944-5953. doi: 10.1021/acs.langmuir.0c00770. Epub 2020 May 22.

Abstract

Activation of Raf kinases by the membrane-anchored protein K-Ras4B is a key step of cellular signal regulation. As a predominant variant of the Ras family, K-Ras4B has been considered to be a major drug target in cancer therapy. Therefore, an integrated study of Raf interaction with membrane-associated K-Ras4B is essential. While the Ras-binding domain (RBD) of Raf contains the main binding interface to K-Ras4B, its cysteine-rich domain (CRD) is thought to be responsible for its association with the membrane interface. We applied time-lapse tapping-mode atomic force microscopy to visualize and characterize the interaction of these binding motifs of A-, B-, and C-Raf isoforms with K-Ras4B in a raft-like anionic model biomembrane. However, we found that the RBDs of the Raf isomers are readily recruited to K-Ras4B nanoclusters in the lipid membrane, with different efficiencies. Unexpectedly and different from A-Raf-RBD, B- and C-Raf-RBD are able to bind markedly also directly to the lipid membrane. We also found that Raf-RBD-CRD is readily recruited to the K-Ras4B forming nanoclusters in the fluid membrane phase, with the CRD domains binding to the lipid interface. The K-Ras4B-nanoclusters are likely to enhance Raf binding and activate signaling by enriching the Raf proteins and facilitating formation of Raf dimers. Interestingly, A-, B-, and C-Raf-RBD-CRD are also able to bind directly to the heterogeneous membrane surrounding the K-Ras4B nanoclusters, which could potentially enhance the overall affinity to K-Ras4B in a Raf-isoform-dependent manner. Overall, these results provide new insights into the spatial organization of the membrane-associated Raf-Ras signaling module for the various Raf isoforms, which is important for understanding the activation of Raf kinases and required for the development of drugs against cancers through targeting Raf-Ras interactions.

摘要

膜锚定蛋白K-Ras4B对Raf激酶的激活是细胞信号调节的关键步骤。作为Ras家族的主要变体,K-Ras4B被认为是癌症治疗中的主要药物靶点。因此,对Raf与膜相关K-Ras4B相互作用进行综合研究至关重要。虽然Raf的Ras结合结构域(RBD)包含与K-Ras4B的主要结合界面,但其富含半胱氨酸的结构域(CRD)被认为负责其与膜界面的结合。我们应用时间分辨轻敲模式原子力显微镜来可视化和表征A-、B-和C-Raf亚型的这些结合基序与K-Ras4B在类筏阴离子模型生物膜中的相互作用。然而,我们发现Raf异构体的RBDs以不同效率被迅速招募到脂质膜中的K-Ras4B纳米簇中。出乎意料的是,与A-Raf-RBD不同,B-和C-Raf-RBD也能够明显直接结合到脂质膜上。我们还发现Raf-RBD-CRD很容易被招募到流体膜相中形成纳米簇的K-Ras4B上,CRD结构域与脂质界面结合。K-Ras4B纳米簇可能通过富集Raf蛋白并促进Raf二聚体的形成来增强Raf结合并激活信号传导。有趣的是,A-、B-和C-Raf-RBD-CRD也能够直接结合到K-Ras4B纳米簇周围的异质膜上,这可能以Raf异构体依赖的方式潜在地增强对K-Ras4B的整体亲和力。总体而言,这些结果为各种Raf异构体的膜相关Raf-Ras信号模块的空间组织提供了新见解,这对于理解Raf激酶的激活以及通过靶向Raf-Ras相互作用开发抗癌药物至关重要。

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