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单细胞信号分析表明,主要穹窿蛋白促进对RasG12C抑制剂的抗性。

Single-cell signaling analysis reveals that Major Vault Protein facilitates RasG12C inhibitor resistance.

作者信息

Zhang Jason Z, Ong Shao-En, Baker David, Maly Dustin J

机构信息

Department of Biochemistry, University of Washington, Seattle, Washington 98195, United States.

Institute for Protein Design, University of Washington, Seattle, Washington 98195, United States.

出版信息

bioRxiv. 2023 Oct 4:2023.10.02.560617. doi: 10.1101/2023.10.02.560617.

Abstract

Recently developed covalent inhibitors for RasG12C provide the first pharmacological tools to target mutant Ras-driven cancers. However, the rapid development of resistance to current clinical Ras G12C inhibitors is common. Presumably, a subpopulation of RasG12C-expressing cells adapt their signaling to evade these inhibitors and the mechanisms for this phenomenon are unclear due to the lack of tools that can measure signaling with single-cell resolution. Here, we utilized recently developed Ras sensors to profile the environment of active Ras and to measure the activity of endogenous Ras in order to pair structure (Ras signalosome) to function (Ras activity), respectively, at a single-cell level. With this approach, we identified a subpopulation of KRasG12C cells treated with RasG12C-GDP inhibitors underwent oncogenic signaling and metabolic changes driven by WT Ras at the golgi and mutant Ras at the mitochondria, respectively. Our Ras sensors identified Major Vault Protein (MVP) as a mediator of Ras activation at both compartments by scaffolding Ras signaling pathway components and metabolite channels. We found that recently developed RasG12C-GTP inhibitors also led to MVP-mediated WT Ras signaling at the golgi, demonstrating that this a general mechanism RasG12C inhibitor resistance. Overall, single-cell analysis of structure-function relationships enabled the discovery of a RasG12C inhibitor-resistant subpopulation driven by MVP, providing insight into the complex and heterogenous rewiring occurring during drug resistance in cancer.

摘要

最近开发的针对RasG12C的共价抑制剂为靶向突变Ras驱动的癌症提供了首批药理学工具。然而,对当前临床Ras G12C抑制剂产生耐药性的快速发展很常见。据推测,表达RasG12C的细胞亚群会调整其信号传导以逃避这些抑制剂,由于缺乏能够以单细胞分辨率测量信号传导的工具,这种现象的机制尚不清楚。在这里,我们利用最近开发的Ras传感器来描绘活性Ras的环境并测量内源性Ras的活性,以便在单细胞水平上分别将结构(Ras信号体)与功能(Ras活性)配对。通过这种方法,我们确定了用RasG12C-GDP抑制剂处理的KRasG12C细胞亚群分别经历了由高尔基体上的野生型Ras和线粒体上的突变型Ras驱动的致癌信号传导和代谢变化。我们的Ras传感器通过搭建Ras信号通路组件和代谢物通道,将主要穹窿蛋白(MVP)确定为两个区室中Ras激活的介质。我们发现,最近开发的RasG12C-GTP抑制剂也导致高尔基体上MVP介导的野生型Ras信号传导,这表明这是RasG12C抑制剂耐药的一般机制。总体而言,对结构-功能关系的单细胞分析揭示了由MVP驱动的RasG12C抑制剂耐药亚群,为癌症耐药过程中发生的复杂且异质的信号重连提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f01b/10592919/4f81bb50fe0c/nihpp-2023.10.02.560617v1-f0001.jpg

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