The Regulatory Network of hnRNPs Underlying Regulating PKM Alternative Splicing in Tumor Progression

One of the hallmarks of cancer is metabolic reprogramming in tumor cells, and aerobic glycolysis is the primary mechanism by which glucose is quickly transformed into lactate. As one of the primary rate-limiting enzymes, pyruvate kinase (PK) M is engaged in the last phase of aerobic glycolysis. Alte...

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Veröffentlicht in:Biomolecules (Basel, Switzerland) Switzerland), 2024-05, Vol.14 (5), p.566
Hauptverfasser: Li, Yuchao, Zhang, Shuwei, Li, Yuexian, Liu, Junchao, Li, Qian, Zang, Wenli, Pan, Yaping
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Sprache:eng
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Zusammenfassung:One of the hallmarks of cancer is metabolic reprogramming in tumor cells, and aerobic glycolysis is the primary mechanism by which glucose is quickly transformed into lactate. As one of the primary rate-limiting enzymes, pyruvate kinase (PK) M is engaged in the last phase of aerobic glycolysis. Alternative splicing is a crucial mechanism for protein diversity, and it promotes precursor mRNA splicing to produce dominance, resulting in low expression. Specific splicing isoforms are produced in various tissues or illness situations, and the post-translational modifications are linked to numerous disorders, including cancers. hnRNPs are one of the main components of the splicing factor families. However, there have been no comprehensive studies on hnRNPs regulating alternative splicing. Therefore, this review focuses on the regulatory network of hnRNPs on pre-mRNA alternative splicing in tumors and clinical drug research. We elucidate the role of alternative splicing in tumor progression, prognosis, and the potential mechanism of abnormal RNA splicing. We also summarize the drug targets retarding tumorous splicing events, which may be critical to improving the specificity and effectiveness of current therapeutic interventions.
ISSN:2218-273X
2218-273X
DOI:10.3390/biom14050566