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Guanine nucleotide biosynthesis blockade impairs MLL complex formation and sensitizes leukemias to menin inhibition

  • Xiangguo Shi
  • , Minhua Li
  • , Zian Liu
  • , Jonathan Tiessen
  • , Yuan Li
  • , Jing Zhou
  • , Yudan Zhu
  • , Swetha Mahesula
  • , Qing Ding
  • , Lin Tan
  • , Mengdie Feng
  • , Yuki Kageyama
  • , Yusuke Hara
  • , Jacob J. Tao
  • , Xuan Luo
  • , Kathryn A. Patras
  • , Philip L. Lorenzi
  • , Suming Huang
  • , Alexandra M. Stevens
  • , Koichi Takahashi
  • Ghayas C. Issa, Md Abul Hassan Samee, Michalis Agathocleous, Daisuke Nakada

Research output: Contribution to journalArticlepeer-review

Abstract

Targeting the dependency of MLL-rearranged (MLLr) leukemias on menin with small molecule inhibitors has opened new therapeutic strategies for these poor-prognosis diseases. However, the rapid development of menin inhibitor resistance calls for combinatory strategies to improve responses and prevent resistance. Here we show that leukemia stem cells (LSCs) of MLLr acute myeloid leukemia (AML) exhibit enhanced guanine nucleotide biosynthesis, the inhibition of which leads to myeloid differentiation and sensitization to menin inhibitors. Mechanistically, targeting inosine monophosphate dehydrogenase 2 (IMPDH2) reduces guanine nucleotides and rRNA transcription, leading to reduced protein expression of LEDGF and menin. Consequently, the formation and chromatin binding of the MLL-fusion complex is impaired, reducing the expression of MLL target genes. Inhibition of guanine nucleotide biosynthesis or rRNA transcription further suppresses MLLr AML when combined with a menin inhibitor. Our findings underscore the requirement of guanine nucleotide biosynthesis in maintaining the function of the LEDGF/menin/MLL-fusion complex and provide a rationale to target guanine nucleotide biosynthesis to sensitize MLLr leukemias to menin inhibitors.

Original languageEnglish (US)
Article number2641
JournalNature communications
Volume16
Issue number1
DOIs
StatePublished - Dec 2025

All Science Journal Classification (ASJC) codes

  • General Chemistry
  • General Biochemistry, Genetics and Molecular Biology
  • General
  • General Physics and Astronomy

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