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磷酸化会削弱但不会抑制K-Ras4B与膜的结合及聚集。

Phosphorylation Weakens but Does Not Inhibit Membrane Binding and Clustering of K-Ras4B.

作者信息

Zhang Si-Yu, Sperlich Benjamin, Li Fang-Yi, Al-Ayoubi Samy, Chen Hong-Xue, Zhao Yu-Fen, Li Yan-Mei, Weise Katrin, Winter Roland, Chen Yong-Xiang

机构信息

Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Department of Chemistry, Tsinghua University , Beijing 100084, China.

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

出版信息

ACS Chem Biol. 2017 Jun 16;12(6):1703-1710. doi: 10.1021/acschembio.7b00165. Epub 2017 May 9.

Abstract

K-Ras4B is one of the most frequently mutated Ras isoforms in cancer. The signaling activity of K-Ras4B depends on its localization to the plasma membrane (PM), which is mainly mediated by its polybasic farnesylated C-terminus. On top of the constitutive cycles that maintain the PM enrichment of K-Ras4B, conditional phosphorylation at Ser181 located within this motif has been found to be involved in regulating K-Ras4B's cell distribution and signaling activity. However, discordant observations have undermined our understanding of the role this phosphorylation plays. Here, we report an efficient strategy for producing K-Ras4B simultaneously bearing phosphate, farnesyl, and methyl modifications on a preparative scale, a very useful in vitro system when used in concert with model biomembranes. By using this system, we determined that phosphorylation at Ser181 does not fully inhibit membrane binding and clustering of K-Ras4B but reduces its membrane binding affinity, depending on membrane fluidity. In addition, phosphorylated K-Ras4B maintains tight association with its cytosolic shuttle protein PDEδ. After delivering K-Ras4B containing nonhydrolyzable phosphoserine mimetic into cells, the protein displayed a decreasing PM distribution compared with nonphosphorylable K-Ras4B, implying that phosphorylation might facilitate the dissociation of K-Ras4B from the PM. In addition, phosphorylation does not alter the localization of K-Ras4B in the liquid-disordered lipid subdomains of the membrane but slightly alters the thermotropic properties of K-Ras4B-incorporated membranes probably due to minor differences in membrane partitioning and dynamics. These results provide novel mechanistic insights into the role that phosphorylation at Ser181 plays in regulating K-Ras4B's distribution and activity.

摘要

K-Ras4B是癌症中最常发生突变的Ras亚型之一。K-Ras4B的信号传导活性取决于其定位于质膜(PM),这主要由其多碱性法尼基化的C末端介导。除了维持K-Ras4B在质膜富集的组成性循环外,已发现位于该基序内的Ser181处的条件性磷酸化参与调节K-Ras4B的细胞分布和信号传导活性。然而,不一致的观察结果削弱了我们对这种磷酸化作用的理解。在这里,我们报告了一种在制备规模上同时产生带有磷酸、法尼基和甲基修饰的K-Ras4B的有效策略,当与模型生物膜协同使用时,这是一个非常有用的体外系统。通过使用这个系统,我们确定Ser181处的磷酸化不会完全抑制K-Ras4B的膜结合和聚集,但会降低其膜结合亲和力,这取决于膜的流动性。此外,磷酸化的K-Ras4B与其胞质穿梭蛋白PDEδ保持紧密结合。将含有不可水解磷酸丝氨酸模拟物的K-Ras4B递送至细胞后,与不可磷酸化的K-Ras4B相比,该蛋白的质膜分布减少,这意味着磷酸化可能促进K-Ras4B从质膜解离。此外,磷酸化不会改变K-Ras4B在膜的液相无序脂质亚结构域中的定位,但可能由于膜分配和动力学的微小差异而略微改变了掺入K-Ras4B的膜的热致性质。这些结果为Ser181处的磷酸化在调节K-Ras4B的分布和活性中所起的作用提供了新的机制见解。

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