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Published on: December 13, 2018
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.
Backgroud:
Multiple myeloma (MM) is an incurable plasma cell malignancy in the bone marrow (BM), while immunoglobulin D type of MM (IgD MM) is a very rare but most severe subtype in all MM cases. Therefore, systemic study on IgD MM is purposeful to disclose the recurrent and refractory features in both IgD and other types of MM, and beneficial to the development of potent therapeutic strategy on MM.
Methods:
Agilent SBC-ceRNA microarray chips were employed to examine 3 normal plasma cell samples (NPCs), 5 lgD MM samples and 5 lgG MM samples, respectively. Sanger sequencing, RNase R digestion and qPCR assays were used to detect the existence and expression of circHNRNPU. BaseScope™ RNA ISH assay was performed to test circHNRNPU levels in paraffin-embedded MM tissues. The protein encoded by circHNRNPU was identified by LC-MS/MS, which was named as circHNRNPU_603aa. The function of circHNRNPU_603aa on cellular proliferation and cell cycle was assessed by MTT test, colony formation assay, flow cytometry and MM xenograft mouse model in vivo. RIP-seq, RIP-PCR and WB analysis for ubiquitination were performed to explore the potential mechanism of circHNRNPU_603aa in MM. Exosomes were isolated from the culture supernatant of MM cells by ultracentrifugation and characterized by Transmission Electron Microscope and WB confirmation of exosomes markers Alix and CD9.
Results:
CircHNRNPU was one of the top most abundant and differentially expressed circRNA in IgD MM relative to lgG and NPCs samples. Increased circHNRNPU was associated with poor outcomes in four independent MM patient cohorts. Intriguingly, MM cells secreted circHNRNPU, which encoded a protein named as circHNRNPU_603aa. Overexpressed circHNRNPU_603aa promoted MM cell proliferation in vitro and in vivo, in contrast knockdown of circHNRNPU_603aa by siRNA abrogated these effects. Due to circHNRNPU_603aa including RNA-binding RGG-box region, it regulated SKP2 exon skipping, thereby competitively inhibited c-Myc ubiquitin so as to stabilize c-Myc in MM. MM cells secreted circHNRNPU through exosomes to interfere with various cells in the BM microenvironment.
Conclusion:
Our findings demonstrate that circHNRNPU_603aa is a promising diagnostic and therapeutic marker in both MM cells and BM niche.
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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