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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

Non-coding RNA: what is functional and what is junk?

TL;DR: How to determine whether any given ncRNA has a function is discussed, and it is advocated that in the absence of any such data, the appropriate null hypothesis is that the RNA in question is junk.
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Oncogenic Role of Fusion-circRNAs Derived from Cancer-Associated Chromosomal Translocations

TL;DR: It is shown that well-established cancer-associated chromosomal translocations give rise to fusion circRNAs (f-circRNA) that are produced from transcribed exons of distinct genes affected by the translocations.
Journal ArticleDOI

Circular RNA and its mechanisms in disease: From the bench to the clinic.

TL;DR: Although their exact roles and mechanisms of gene regulation remain to be clarified, circRNAs have potential applications as disease biomarkers and novel therapeutic targets.
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The Landscape of MicroRNA, Piwi-Interacting RNA, and Circular RNA in Human Saliva

TL;DR: This study provides a comprehensive landscape of ncRNA species in human saliva that will facilitate further biomarker discoveries and lay a foundation for future studies related to ncRNAs inhuman saliva.
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Efficient backsplicing produces translatable circular mRNAs.

TL;DR: This study revealed that backsplicing can occur efficiently in diverse eukaryotes to generate circular mRNAs and is regulated by general splicing factors and cis-elements, but with regulatory rules distinct from canonical splicing.
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.
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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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