| Literature DB >> 28049499 |
Yeping Dong1, Dan He1, Zhenzi Peng1, Wei Peng1, Wenwen Shi1, Jun Wang1, Bin Li1, Chunfang Zhang2, Chaojun Duan3,4,5.
Abstract
Circular RNAs (circRNAs) are a class of endogendous RNAs that form a covalently closed continuous loop and exist extensively in mammalian cells. Majority of circRNAs are conserved across species and often show tissue/developmental stage-specific expression. CircRNAs were first thought to be the result of splicing error; however, subsequent research shows that circRNAs can function as microRNA (miRNA) sponges and regulate splicing and transcription. Emerging evidence shows that circRNAs possess closely associated with human diseases, especially cancers, and may serve as better biomarkers. After miRNA and long noncoding RNA (lncRNA), circRNAs are becoming a new hotspot in the field of RNA of cancer. Here, we review biogenesis and metabolism of circRNAs, their functions, and potential roles in cancer.Entities:
Keywords: Biomarkers; Cancer; Circular RNAs; MicroRNA sponges
Mesh:
Substances:
Year: 2017 PMID: 28049499 PMCID: PMC5210264 DOI: 10.1186/s13045-016-0370-2
Source DB: PubMed Journal: J Hematol Oncol ISSN: 1756-8722 Impact factor: 17.388
Fig. 1Canonical and noncanonical splicing of circRNA. a mRNA and ciRNA by canonical splicing. b circRNA by direct back splicing. c ciRNA by back splicing. d circRNA and EIciRNA by RBP-driven circularization. Abbreviations: ciRNA circular intronic RNA, circRNA exonic circular RNA, ElciRNA exon-intron circular RNA, RBP RNA-binding protein
Fig. 2Overview of the four molecular functions of circRNA. a circRNAs can interact with miRNAs, acting as “sponges”. b circRNA have a direct role in translation. c ciRNA can enhance the expression of parent genes; ElciRNA can also enhance the expression of parental genes with U1 snRNP and Pol II. d circRNA can generate functional proteins. Abbreviations: circRNAs circular RNAs, miRNA microRNA, ciRNA circular intronic RNA, Pol II polymerase II, ElciRNA exon-intron circular RNA, U1 snRNP U1 small nuclear ribonucleoprotein particle, mRNA messenger RNA, rRNA ribosome RNA
Summary of circRNAs in cancer
| Cancer name | CircRNA name | Expression level | Scope | Sample | Intersection molecules and/or pathway | References |
|---|---|---|---|---|---|---|
| Bladder carcinoma | circTCF25 | Up | Bladder carcinoma vs normal | Tissues ( | miR-103a-3p,miR-107; circTCF25-miR-103a-3p/miR-107-CDK6 | Zhong et al. [ |
| cSCC | hsa_circ_0035381 | Up | cSCC vs normal | Tissues ( | hsa-miR-124-5p,hsa-miR-9-5p | Sand et al. [ |
| hsa_circ_0022383 | Down | hsa-miR-124-5p | ||||
| ESCC | cir-ITCH | Down | ESCC vs normal | Tissues ( | miR-7, miR-17, and miR-214;Wnt/β-catenin pathway | Li et al. [ |
| Gastric cancer | has_circ_002059 | Down | Gastric cancer vs normal | Tissues ( | – | Li et al. [ |
| Plasma ( | ||||||
| CRC | hsa_circ_001988 | Down | CRC vs normal | Tissues ( | – | Wang et al. [ |
| cir-ITCH | Down | CRC vs normal | Tissues ( | Wnt/β-catenin pathway | Huang et al. [ | |
| HCC | hsa_circ_0001649 | Down | HCC vs normal | Tissues ( | – | Qin et al. [ |
| LSCC | hsa_circ_104912 | Down | LSCC vs normal | Tissues ( | – | Xuan et al. [ |
| hsa_circ_100855 | Up | |||||
| APL | f-circRNA | – | f-circRNA-expressing vas normal | Cells | PI3K and MAPK signal transduction pathways | Guarnerio et al. [ |
Notes: Up upregulated, down downregulated
Abbreviations: circRNAs circular RNAs, cSCC cutaneous squamous cell carcinoma, ESCC esophageal squamous cell carcinoma, CRC colorectal cancer, HCC hepatocellular carcinoma, LSCC laryngeal squamous cell cancer, APL acute promyelocytic leukemia