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Open AccessJournal ArticleDOI

Circular RNAs Are the Predominant Transcript Isoform from Hundreds of Human Genes in Diverse Cell Types

TLDR
By deep sequencing of RNA from a variety of normal and malignant human cells, this work suggests that a non-canonical mode of RNA splicing, resulting in a circular RNA isoform, is a general feature of the gene expression program in human cells.
Abstract
Most human pre-mRNAs are spliced into linear molecules that retain the exon order defined by the genomic sequence. By deep sequencing of RNA from a variety of normal and malignant human cells, we found RNA transcripts from many human genes in which the exons were arranged in a non-canonical order. Statistical estimates and biochemical assays provided strong evidence that a substantial fraction of the spliced transcripts from hundreds of genes are circular RNAs. Our results suggest that a non-canonical mode of RNA splicing, resulting in a circular RNA isoform, is a general feature of the gene expression program in human cells.

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Citations
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Journal ArticleDOI

Circular DNA tumor viruses make circular RNAs.

TL;DR: The circRNAs found in Epstein−Barr virus and Kaposi’s sarcoma herpesvirus tumors and cell lines are a new class of viral transcripts expressed in gammaherpesvirus-related tumors that might contribute to viral oncogenesis.
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The role of N 6 -methyladenosine (m 6 A) modification in the regulation of circRNAs

TL;DR: The role of m6A modification in the regulation and function of circRNAs is summarized and the potential applications and possible future directions in the field are discussed.
Journal ArticleDOI

Microarray profile of circular RNAs identifies hsa_circ_0014130 as a new circular RNA biomarker in non-small cell lung cancer.

TL;DR: Gene oncology analysis and pathway analysis revealed that hsa_circ_0014130 could participate in NSCLC development and might be closely related to the carcinogenesis ofNSCLC.
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Circular RNA expression alterations are involved in OGD/R-induced neuron injury

TL;DR: Investigation of circRNA expression differences in HT22 cells with oxygen-glucose deprivation/reoxygenation versus normal controls suggests that the overlapping expression of mmu-circRNA-015947 might be involved in the process of cerebral IRI and presents a novel molecular target for clinical therapy.
Journal ArticleDOI

CircRNAs in hematopoiesis and hematological malignancies

TL;DR: Current insight in circRNA biogenesis is presented discussing the relevance for hematopoiesis of the highly interleaved processes of splicing and circ RNA biogenesis, and circRNAs high and regulated expression in blood cell types indicate that further studies are warranted to inform the position of these regulators in normal and malignant hematopoliesis.
References
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Journal ArticleDOI

A coding-independent function of gene and pseudogene mRNAs regulates tumour biology

TL;DR: It is found that PTENP1 is biologically active as it can regulate cellular levels of PTEN and exert a growth-suppressive role, and this analysis extended to other cancer-related genes that possess pseudogenes, and revealed a non-coding function for mRNAs.
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Circular transcripts of the testis-determining gene Sry in adult mouse testis

TL;DR: It is suggested that the circles arise from normal splicing processes as a consequence of the unusual genomic structure surrounding the Sry locus in the mouse.
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Mis-splicing yields circular RNA molecules.

TL;DR: To the knowledge, this is the first case of circular transcripts being processed from nuclear pre‐mRNA in eukaryotes, and might represent a novel aspect of gene expression and hold some interesting clues about the splicing mechanism.
Journal ArticleDOI

miRNA-dependent gene silencing involving Ago2-mediated cleavage of a circular antisense RNA

TL;DR: This study provides the first evidence for non‐coding antisense transcripts as functional miRNA targets, and a novel regulatory mechanism involving a positive correlation between mRNA and antisense circular RNA levels.
Journal ArticleDOI

Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk

TL;DR: The results identify novel circular RNA products emanating from the ANRIL locus and suggest causal variants at 9p21.3 regulate INK4/ARF expression and ASVD risk by modulating ANRil expression and/or structure.
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