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Published on: July 17, 2020
Therapeutic SHPRH-146aa encoded by circ-SHPRH dynamically upregulates P21 to inhibit CDKs in neuroblastoma
Saishuo Chang1, Dong Ren2, Li Zhang3
1Department of Surgery, Beijing Children's Hospital, Capital Medical University, National Center for Children's Health, Beijing, 100045, China.
Abstract:
Recent research has underscored the significance of circular RNAs (circRNAs) in various cancers, including neuroblastoma (NB). Specifically, circ-SHPRH, a unique circRNA, has been revealed to inhibit tumor growth by sequestering miRNAs or producing the SHPRH-146aa protein. To explore circ-SHPRH's involvement in NB and its potential application in gene therapy, this study examined circ-SHPRH expression in 94 NB tissues and cell lines (SK-N-BE(2), SH-SY5Y) using real-time PCR and fluorescence in situ hybridization (FISH). Functional assays encompassing both overexpression and knockdown experiments in NB cell lines, as well as in vivo investigations, were conducted. RNA-seq analysis revealed a correlation between circ-SHPRH and the pathway of P21 (CDKN1A), a pivotal cell cycle regulator. Validation through PCR and other techniques confirmed that circ-SHPRH upregulated P21 expression. Furthermore, the regulatory role of circ-SHPRH in the P21-CDK pathway was corroborated through SHPRH-146aa expression analysis. Notably, adenovirus-mediated circ-SHPRH overexpression effectively curbed NB tumor growth in NSG mice, while combining circ-SHPRH with everolimus exhibited potential for NB treatment. This study elucidates the remarkable significance of circ-SHPRH in NB and its prospective utility in gene therapy, thereby paving the way for innovative therapeutic approaches.
Insights
Circular RNAs (circRNAs), specifically circ-SHPRH, inhibit neuroblastoma (NB) growth by regulating P21 expression. Adenovirus-mediated circ-SHPRH shows promise for NB gene therapy and combination treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Circular RNAs (circRNAs) are increasingly recognized for their roles in cancer development.
- Circ-SHPRH has been identified as a tumor suppressor in neuroblastoma (NB).
Purpose of the Study:
- To investigate the expression and function of circ-SHPRH in neuroblastoma.
- To explore the therapeutic potential of circ-SHPRH in NB gene therapy.
Main Methods:
- Real-time PCR and FISH to assess circ-SHPRH expression in NB tissues and cell lines.
- Overexpression, knockdown, and in vivo assays to determine functional roles.
- RNA-seq and pathway analysis to identify molecular mechanisms.
Main Results:
- Circ-SHPRH expression was analyzed in 94 NB tissues and cell lines.
- Circ-SHPRH was found to upregulate P21 (CDKN1A) expression, a key cell cycle regulator.
- Adenovirus-mediated circ-SHPRH overexpression suppressed NB tumor growth in vivo.
- Combination therapy with circ-SHPRH and everolimus showed therapeutic potential.
Conclusions:
- Circ-SHPRH plays a significant role in inhibiting NB tumor growth.
- Circ-SHPRH holds promise as a novel target for NB gene therapy.
- Further research into circ-SHPRH-based therapies could lead to innovative treatment strategies for NB.
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