| Literature DB >> 33649862 |
Shanshan Li1, Yize Liu2, Guanzhen Qiu2, Yinzhou Luo2, Xiang Li1, Fei Meng3, Nanyang Li4, Tiance Xu5, Yong Wang2, Baoli Qin6, Shuyue Xia1.
Abstract
Circular RNAs (circRNAs) are a class of novel endogenous transcripts with limited protein‑coding abilities. CircRNAs have been demonstrated to function as critical regulators of tumor development and distant metastasis through binding to microRNAs (miRNAs) and interacting with RNA‑binding proteins, thereby regulating transcription and translation. Emerging evidence has illustrated that certain circRNAs can serve as biomarkers for diagnosis and prognosis of cancer, and/or serve as potential therapeutic targets. Expression of functional circRNAs is commonly dysregulated in cancer and this is correlated with advanced Tumor‑Node‑Metastasis stage, lymph node status, distant metastasis, poor differentiation and shorter overall survival of cancer patients. Recently, an increasing number of studies have shown that circRNAs are closely associated with NSCLC. Functional experiments have revealed that circRNAs are intricately associated with the pathological progression of NSCLC. The present review provides an overview of the regulatory effect of circRNAs in the development and progression of NSCLC, taking into consideration various physiological and pathological processes, such as proliferation, apoptosis, invasion and migration, and their potential value as biomarkers and therapeutic targets.Entities:
Year: 2021 PMID: 33649862 PMCID: PMC7876988 DOI: 10.3892/or.2021.7968
Source DB: PubMed Journal: Oncol Rep ISSN: 1021-335X Impact factor: 3.906
Figure 1.Biogenesis of circRNAs. CircRNA, circular RNA; ciRNAs, intronic circRNAs; EIciRNAs, exon-intron circRNA. CircRNA, circular RNA.
Figure 2.Biological functions of circRNAs. CircRNA, circular RNA; miRNA, microRNA.
CircRNAs act as prognostic or diagnostic biomarkers of non-small cell lung cancer.
| ROC curve | |||||||||
|---|---|---|---|---|---|---|---|---|---|
| First author, year | CircRNA name | circBase ID | Dysregulation | Correlation with clinical characteristics | Kaplan-Meier OS curves | AUC | Sensitivity | Specificity | (Refs.) |
| Zhang | Circ_0014130 | Up | TNM stage, lymphatic metastasis | – | 0.878 | 0.87 | 0.848 | ( | |
| Chen | Circ_100146 | Up | Pathological classification, differentiation grade | – | 0.643 | 0.725 | 0.575 | ( | |
| Qiu | CircPRKCI | Up | T stage, TNM stage | Poor prognosis/independent factor (Multivariate analyses: HR=2.664, 95% CI: 1.327–5.347, P=0.006) | – | – | – | ( | |
| Chen | Circ_100395 | Down | Cancer metastasis, TNM stage | Poor prognosis | – | – | – | ( | |
| Han | CircBANP | Up | Cancer metastasis, TNM stage | Poor prognosis | – | – | – | ( | |
| Zhang | Circular RNAciRS-7/CDR1as | hsa_circ_0001946 | Up | TNM stage, lymphatic Metastasis, pathological classification | Shorter OS | ( | |||
| Zhu | Circ_0013958 | hsa_circ_0013958 | Up | TNM stage, lymphatic metastasis | – | 0.815 | 0.755 | 0.796 | ( |
| Wang | CircVANGL1 | Up | T stage, TNM stage | Poor prognosis | – | – | – | ( | |
| Li | CircPVT1 | Up | Distant metastasis | – | 0.803 | 0.825 | 0.675 | ( | |
| Wang | CircCRIM1 | Down | TNM stage, lymphatic metastasis | Poor prognosis | – | – | – | ( | |
| SHI | CircLARP4 | Down | – | Poor prognosis | – | – | – | ( | |
CircRNA, circular RNA; TNM, Tumor-Node-Metastasis; ROC, receiver operating characteristic; AUC, area under the curve; OS, overall survival; HR, hazard ratio; CI, confidence interval.
Figure 3.CircRNAs are extensively implicated in the pathogenesis of NSCLC. CircRNA, circular RNA; NSCLC, non-small cell lung cancer; EMT, epithelial-mesenchymal transition.
Clinical value of circRNAs involved in the pathogenesis and progression of NSCLC.
| First author, year | CircRNA name | circBase ID | Dysregulation | Function | Target gene/pathway | Effect in NSCLC | (Refs.) |
|---|---|---|---|---|---|---|---|
| Chen | Circ_100146 | – | Up | miRNA sponge | miR-615-5p↓, miR-361-3p↓, SF3B3↑ | Proliferation↑, invasion↑, apoptosis↓ | ( |
| Qiu | CircPRKCI | – | Up | miRNA sponge | miR-545↓, miR-589↓, E2F7↑ | Proliferation↑, migration↑, | ( |
| Joseph | CircCCDC66 | – | Up | – | – | Invasion↑, EMT↑, drug resistance (cisplatin) ↑ | ( |
| Chen | Circ_100395 | – | Down | miRNA sponge | miR-1228↓, TCF21↑ | Proliferation↑, migration↑, invasion↑ | ( |
| Han | CircBANP | – | Up | miRNA sponge | miR-503↓, LARP1↑ | Proliferation↑, migration↑, invasion↑ | ( |
| Zhang | Circular RNAciRS-7/CDR1as | hsa_circ_0001946 | Up | miRNA sponge | miR-7↓, EGFR↑, CCNE1↑, PIK3CD↑, NF-kB↑ | Proliferation↑, migration↑. invasion↑, apoptosis↓ | ( |
| Zhu | Circ_0013958 | hsa_circ_0013958 | Up | miRNA sponge | miR-134↓, CCND1↑ | Proliferation↑, invasion↑, apoptosis↓ | ( |
| Chi | CircPIP5K1A | hsa_circ_0014130 | Up | miRNA sponge | miR-600↓, HIF-1α↑ | Apoptosis↓, proliferation↑ | ( |
| Nan | CircNOL10 | hsa_circ_0000977 | Down | Protein binding, regulation of transcriptional | SCML1↑, HN polypeptide family | Apoptosis↑, proliferation↓, invasion↓ | ( |
| Chen | CircHIPK3 | hsa_circ_0000284 | Up | miRNA sponge | miR-124-3p↓, STAT3/PRKAA/AMPKa↑ | Proliferation↑, invasion↑, migration↑, autophagy↑ | ( |
| Wang | CircVANGL1 | – | Up | miRNA sponge | miR-195↓, Bax↑, Bcl-2↑ | Migration↑, invasion↑, apoptosis↓ | ( |
| Li | CircPVT1 | – | Up | miRNA sponge | miR-125b↓, E2F2↑ | Proliferation↑, migration↑, invasion↑, apoptosis↓ | ( |
| Gao | CircSOX4 | – | Up | miRNA sponge | miR-1270↓, PLAGL2↑ | Proliferation↑, invasion↑, migration↑ | ( |
| Wang | CircPTK2 | – | Down | miRNA sponge | miR-429↓, miR-200b-3p↓, TIF1γ↑ | Invasion↓, TGF-β-induced EMT↓ | ( |
| Wang | CircCRIM1 | hsa_circ_0002346 | Down | miRNA sponge | miR-93↓, miR-182↓, LIFR↑, MMP13↑, PI3K/AKT/ JAK1↑ | Invasion↓, metastasis↓ | ( |
| Shi | CircLARP4 | – | Down | Protein binding | SMAD7↑ | Invasion↓, migration↓ | ( |
| Wan | CircITCH | – | Down | miRNA sponge, regulation of parental genes | miR-7↓, miR-214↓, Wnt/β-catenin↓, ITCH↑ | Proliferation↓ | ( |
| Huang | Circ_0001946 | – | Down | miRNA sponge | miR-7-5p↓, miR-671-5p↓, miR-3156-5p↓, miR-1270↓, NER↑ | Proliferation↓, invasion↓, migration↓, drug resistance (cisplatin) ↓, apoptosis↑ | ( |
| Li | Circ_0002483 | – | Down | miRNA sponge | miR-182-5p↓, miR-520q-3p↓, miR-582-3p↓, miR-587↓, GRB2↑, FOXO1↑, FOXO3↑ | Proliferation↓, invasion↓, drug resistance (Taxol)↓ | ( |
| Xiao | Circ_103762 | – | Up | Protein binding | CHOP↓ | Proliferation↑, migration↑, invasion↑, drug resistance (MDR) ↑ | ( |
CircRNA, circular RNA; miR/miRNA, microRNA; MDR, multi-drug resistance; NSCLC, non-small cell lung cancer; EMT, epithelial-mesenchymal transition.
Figure 4.Several circRNAs and their downstream targets in the regulation of the pathological progression of NSCLC. CircRNA, circular RNA; NSCLC, non-small cell lung cancer; miR, microRNA.