category
bioRxiv
date
Mar 14, 2026
slug
status
Published
summary
发现PHGDH在PDAC进展中起关键作用,其缺失通过抑制mTOR信号和谷氨酰胺代谢导致肿瘤生长受限,并揭示PHGDH缺失肿瘤对谷氨酰胺拮抗剂DRP-104的特异性敏感性,为联合代谢靶向治疗提供新思路。
tags
基因编辑
type
Post
📄 原文题目
PHGDH is a targetable driver of PDAC progression
🔗 原文链接
💡 AI 核心解读
发现PHGDH在PDAC进展中起关键作用,其缺失通过抑制mTOR信号和谷氨酰胺代谢导致肿瘤生长受限,并揭示PHGDH缺失肿瘤对谷氨酰胺拮抗剂DRP-104的特异性敏感性,为联合代谢靶向治疗提供新思路。
📝 英文原版摘要
Pancreatic ductal adenocarcinoma (PDAC) arises in a nutrient-deprived microenvironment through progressive stages from pancreatic intraepithelial neoplasia (PanIN) to invasive carcinoma. While serine metabolism supports tumor growth across multiple cancer types, the stage-specific role of de novo serine synthesis in PDAC evolution remains undefined. Here, we show that expression of phosphoglycerate dehydrogenase (PHGDH), the rate-limiting enzyme of serine biosynthesis, increases progressively from PanIN to invasive PDAC in human and mouse specimens. Using genetically engineered mouse models with inducible PHGDH knockdown, we found that PHGDH loss delayed PDAC development. Unexpectedly, PHGDH-deficient tumors did not increase reliance on exogenous serine, and dietary serine/glycine manipulation had no effect on tumor development. Instead, stable isotope tracing and metabolomic profiling revealed that PHGDH loss suppressed mTOR signaling, reduced expression of the glutamine transporter ASCT2, and impaired glutamine uptake and utilization. Leveraging this metabolic liability, we demonstrated that PHGDH-deficient tumors exhibited selective sensitivity to the glutamine antagonist DRP-104, whereas PHGDH-intact tumors were resistant. These findings reveal an unanticipated connection between serine biosynthesis and glutamine metabolism in PDAC and identify a therapeutic vulnerability that may be exploited through combined metabolic targeting.
- 作者:NotionNext
- 链接:https://tangly1024.com/article/32348bd6-1f96-818a-a70e-cd8b48140840
- 声明:本文采用 CC BY-NC-SA 4.0 许可协议,转载请注明出处。
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