Zhang Jason Z, Ong Shao-En, Baker David, Maly Dustin J
Department of Biochemistry, University of Washington, Seattle, WA, USA.
Institute for Protein Design, University of Washington, Seattle, WA, USA.
Nat Chem Biol. 2025 Jan;21(1):47-58. doi: 10.1038/s41589-024-01684-4. Epub 2024 Aug 5.
Clinical resistance to rat sarcoma virus (Ras)-G12C inhibitors is a challenge. A subpopulation of cancer cells has been shown to undergo genomic and transcriptional alterations to facilitate drug resistance but the immediate adaptive effects on Ras signaling in response to these drugs at the single-cell level is not well understood. Here, we used Ras biosensors to profile the activity and signaling environment of endogenous Ras at the single-cell level. We found that a subpopulation of KRas-G12C cells treated with Ras-G12C-guanosine-diphosphate inhibitors underwent adaptive signaling and metabolic changes driven by wild-type Ras at the Golgi and mutant KRas at the mitochondria, respectively. Our Ras biosensors identified major vault protein as a mediator of Ras activation through its scaffolding of Ras signaling pathway components and metabolite channels. Overall, methods including ours that facilitate direct analysis on the single-cell level can report the adaptations that subpopulations of cells adopt in response to cancer therapies, thus providing insight into drug resistance.
对大鼠肉瘤病毒(Ras)-G12C抑制剂的临床耐药性是一项挑战。已显示癌细胞亚群会发生基因组和转录改变以促进耐药性,但在单细胞水平上,这些药物对Ras信号传导的即时适应性影响尚不清楚。在此,我们使用Ras生物传感器在单细胞水平上分析内源性Ras的活性和信号传导环境。我们发现,用Ras-G12C-二磷酸鸟苷抑制剂处理的KRas-G12C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KRas驱动的适应性信号传导和代谢变化。我们的Ras生物传感器将主要穹窿蛋白鉴定为Ras激活的介质,通过其对Ras信号通路成分和代谢物通道的支架作用。总体而言,包括我们的方法在内的能够在单细胞水平上进行直接分析的方法,可以报告细胞亚群对癌症治疗所采取的适应性变化,从而为耐药性提供见解。