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RAS GTPases 与 RASSF 效应物之间的复杂相互作用调节 YAP 的亚细胞定位。

Complex interplay between RAS GTPases and RASSF effectors regulates subcellular localization of YAP.

机构信息

Institute for Research in Immunology and Cancer, Université de Montréal, Montréal, QC, H3T 1J4, Canada.

Rosalind and Morris Goodman Cancer Institute, McGill University, Montréal, QC, H3A 1A3, Canada.

出版信息

EMBO Rep. 2024 Aug;25(8):3574-3600. doi: 10.1038/s44319-024-00203-9. Epub 2024 Jul 15.

Abstract

RAS GTPases bind effectors to convert upstream cues to changes in cellular function. Effectors of classical H/K/NRAS are defined by RBD/RA domains which recognize the GTP-bound conformation of these GTPases, yet the specificity of RBD/RAs for over 160 RAS superfamily proteins remains poorly explored. We have systematically mapped interactions between BRAF and four RASSF effectors, the largest family of RA-containing proteins, with all RAS, RHO and ARF small GTPases. 39 validated complexes reveal plasticity in RASSF binding, while BRAF demonstrates tight specificity for classical H/K/NRAS. Complex between RASSF5 and diverse RAS GTPases at the plasma membrane can activate Hippo signalling and sequester YAP in the cytosol. RASSF8 undergoes liquid-liquid phase separation and resides in YAP-associated membraneless condensates, which also engage several RAS and RHO GTPases. The poorly studied RASSF3 has been identified as a first potential effector of mitochondrial MIRO proteins, and its co-expression with these GTPases impacts mitochondria and peroxisome distribution. These data reveal the complex nature of GTPase-effector interactions and show their systematic elucidation can reveal completely novel and biologically relevant cellular processes.

摘要

RAS GTPases 通过结合效应物将上游线索转化为细胞功能的变化。经典 H/K/NRAS 的效应物由 RBD/RA 结构域定义,这些结构域识别这些 GTPases 的 GTP 结合构象,但 RBD/RAs 对超过 160 种 RAS 超家族蛋白的特异性仍然很少被探索。我们已经系统地绘制了 BRAF 与四个 RASSF 效应物之间的相互作用,RASSF 效应物是含有 RA 的最大蛋白家族,与所有 RAS、RHO 和 ARF 小 GTPases 相互作用。39 个已验证的复合物揭示了 RASSF 结合的可塑性,而 BRAF 对经典 H/K/NRAS 表现出严格的特异性。RASSF5 与质膜上多种 RAS GTPases 的复合物可以激活 Hippo 信号通路,并将 YAP 隔离在细胞质中。RASSF8 经历液-液相分离,并存在于与 YAP 相关的无膜凝聚物中,该凝聚物还与几种 RAS 和 RHO GTPases 结合。研究较少的 RASSF3 已被确定为线粒体 MIRO 蛋白的第一个潜在效应物,其与这些 GTPases 的共表达会影响线粒体和过氧化物酶体的分布。这些数据揭示了 GTPase-效应物相互作用的复杂性质,并表明对其系统阐述可以揭示完全新颖和具有生物学相关性的细胞过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a593/11316025/4a57e9821be3/44319_2024_203_Fig1_HTML.jpg

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