Posttranslational modification of Aurora A-NSD2 loop contributes to drug resistance in t(4;14) multiple myeloma

Hongmei Jiang1, Yixuan Wang1, Jingjing Wang1

  • 1The Province and Ministry Co-sponsored Collaborative Innovation Center for Medical Epigenetics, Tianjin Key Laboratory of Cellular Homeostasis and Human Diseases, Department of Physiology and Pathophysiology, School of Basic Medical Science, Tianjin Medical University, Tianjin, China.

Abstract

Insights

Targeting Aurora kinase A enhances bortezomib effectiveness in multiple myeloma patients with the t(4;14) genetic abnormality. This study reveals a new mechanism of chemoresistance involving Aurora A and NSD2, offering a basis for novel therapeutic strategies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • The t(4;14)(p16;q32) cytogenetic abnormality in multiple myeloma (MM) leads to high levels of histone methyltransferase NSD2, associated with poor prognosis.
  • The precise mechanisms by which NSD2 promotes chemoresistance in MM remain incompletely understood.

Purpose of the Study:

  • To screen for epigenetic compounds that synergize with bortezomib (BTZ) in MM.
  • To elucidate the molecular mechanisms underlying chemoresistance in t(4;14)-positive MM.

Main Methods:

  • Screening of an 181-compound epigenetics library for synergy with BTZ.
  • Utilizing molecular biology techniques, RNA-sequencing for transcriptome analysis, and NSG mouse models for in vivo validation.

Main Results:

  • An Aurora kinase A inhibitor, MLN8237, showed significant synergy with BTZ in t(4;14)-positive MM cells.
  • Aurora A positively correlates with NSD2 levels; Aurora A phosphorylates NSD2 at S56, stabilizing it and forming a positive regulatory loop.
  • Downstream targets IL6R, STC2, and TCEA2 were identified as mediators of BTZ resistance, with higher expression correlating with poorer patient outcomes.

Conclusions:

  • Aurora A-mediated phosphorylation of NSD2 enhances its activity, promoting MM chemoresistance.
  • Targeting Aurora A sensitizes t(4;14)-positive MM to proteasome inhibitors, providing a new therapeutic avenue.
  • This study reveals a novel mechanism of chemoresistance in MM and offers a theoretical basis for developing targeted treatment strategies.

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