A novel protein encoded by circHNRNPU promotes multiple myeloma progression by regulating the bone marrow

Xiaozhu Tang1,2, Zhendong Deng2, Pinggang Ding2

  • 1Nanjing Hospital of Chinese Medicine affiliated to Nanjing University of Chinese Medicine, Nanjing, China.

Abstract

Insights

CircHNRNPU, a novel circular RNA, is highly expressed in IgD multiple myeloma (MM) and promotes cancer growth. This circRNA and its encoded protein, circHNRNPU_603aa, are promising diagnostic and therapeutic targets for MM.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Multiple myeloma (MM) is an incurable plasma cell malignancy.
  • Immunoglobulin D (IgD) MM is a rare and severe subtype, necessitating further research.
  • Understanding IgD MM can reveal insights into refractory MM and guide therapeutic strategies.

Purpose of the Study:

  • To investigate the role of circular RNA HNRNPU (circHNRNPU) in multiple myeloma (MM).
  • To identify potential diagnostic and therapeutic markers for MM, particularly the IgD subtype.

Main Methods:

  • Utilized microarray analysis to compare circRNA expression in normal plasma cells, IgD MM, and IgG MM samples.
  • Employed Sanger sequencing, RNase R digestion, and qPCR to validate circHNRNPU expression.
  • Identified the protein encoded by circHNRNPU (circHNRNPU_603aa) using LC-MS/MS.
  • Assessed the functional impact of circHNRNPU_603aa on MM cell proliferation and cell cycle in vitro and in vivo.
  • Investigated the mechanism of circHNRNPU_603aa involving c-Myc stabilization via SKP2 exon skipping.
  • Analyzed exosome-mediated secretion of circHNRNPU.

Main Results:

  • CircHNRNPU was significantly upregulated in IgD MM and associated with poor patient outcomes.
  • Overexpression of circHNRNPU_603aa promoted MM cell proliferation, while its knockdown inhibited growth.
  • CircHNRNPU_603aa stabilizes c-Myc by regulating SKP2 exon skipping and inhibiting c-Myc ubiquitination.
  • MM cells secrete circHNRNPU via exosomes, affecting the bone marrow microenvironment.

Conclusions:

  • CircHNRNPU and its encoded protein circHNRNPU_603aa are key players in MM pathogenesis.
  • CircHNRNPU_603aa represents a potential diagnostic biomarker for MM.
  • CircHNRNPU_603aa holds promise as a therapeutic target for multiple myeloma.

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