Increased glucose utilization is a targetable vulnerability to overcome drug resistance associated with neddylation

Yueyang Guo1, Zhuang Hu1, Linyue Bai1

  • 1School of Pharmaceutical Sciences & Key Laboratory of Advanced Pharmaceutical Technology, Ministry of Education, Zhengzhou University, Zhengzhou 450001, China.

Insights

Neddylation blockade drug MLN4924 boosts gastric cancer cell glucose use by stabilizing HIF-1α. Combining MLN4924 with GLUT1 inhibition offers a potent dual-targeting strategy to overcome resistance and improve treatment efficacy.

Area of Science:

  • Oncology
  • Metabolic pathways
  • Cancer cell biology

Background:

  • Gastric cancer has poor outcomes, especially in advanced stages.
  • Neddylation blockade is a potential therapy but faces drug resistance.
  • Mechanisms of resistance to neddylation blockers are not fully understood.

Purpose of the Study:

  • Investigate MLN4924's effects on gastric cancer cell metabolism.
  • Elucidate the mechanisms of MLN4924-induced metabolic reprogramming.
  • Develop a co-targeting strategy to enhance MLN4924 efficacy.

Main Methods:

  • Cell culture and in vitro/in vivo experiments.
  • Metabolomic analysis to assess metabolic changes.
  • Western blotting to evaluate protein levels (HIF-1α, cullin2).

Main Results:

  • MLN4924 induced mitochondrial damage and enhanced glucose utilization in gastric cancer cells.
  • MLN4924 reduced cullin2 neddylation, stabilizing HIF-1α and upregulating GLUT1.
  • Co-targeting with GLUT1 inhibition improved therapeutic efficacy in vitro and in vivo.

Conclusions:

  • MLN4924 triggers metabolic adaptation in gastric cancer cells via HIF-1α.
  • Targeting both neddylation and glucose metabolism is a promising strategy.
  • This dual-targeting approach may overcome drug resistance in gastric cancer.

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