Promoter RNA links transcriptional regulation of inflammatory pathway genes

Author:

Matsui Masayuki1,Chu Yongjun1,Zhang Huiying1,Gagnon Keith T.1,Shaikh Sarfraz1,Kuchimanchi Satya1,Manoharan Muthiah1,Corey David R.1,Janowski Bethany A.1

Affiliation:

1. Department of Pharmacology and Biochemistry, UT Southwestern Medical Center, 6001 Forest Park Road, Dallas, TX 75390-9041, USA and 2Alnylam Pharmaceuticals, Cambridge, MA 02142, USA

Abstract

Abstract Although many long non-coding RNAs (lncRNAs) have been discovered, their function and their association with RNAi factors in the nucleus have remained obscure. Here, we identify RNA transcripts that overlap the cyclooxygenase-2 (COX-2) promoter and contain two adjacent binding sites for an endogenous miRNA, miR-589. We find that miR-589 binds the promoter RNA and activates COX-2 transcription. In addition to miR-589, fully complementary duplex RNAs that target the COX-2 promoter transcript activate COX-2 transcription. Activation by small RNA requires RNAi factors argonaute-2 (AGO2) and GW182, but does not require AGO2-mediated cleavage of the promoter RNA. Instead, the promoter RNA functions as a scaffold. Binding of AGO2 protein/small RNA complexes to the promoter RNA triggers gene activation. Gene looping allows interactions between the promoters of COX-2 and phospholipase A2 (PLA2G4A), an adjacent pro-inflammatory pathway gene that produces arachidonic acid, the substrate for COX-2 protein. miR-589 and fully complementary small RNAs regulate both COX-2 and PLA2G4A gene expression, revealing an unexpected connection between key steps of the eicosanoid signaling pathway. The work demonstrates the potential for RNA to coordinate locus-dependent assembly of related genes to form functional operons through cis-looping.

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference50 articles.

1. The transcriptional landscape of the mammalian genome;The FANTOM consortium and RIKEN Genome Exploration Research Group and Genome Science Group;Science,2005

2. The reality of pervasive transcription;Clark;PLoS Biol.,2011

3. Modular regulatory principles of large non-coding RNAs;Guttman;Nature,2012

4. Inhibition of natural antisense transcripts in vivo results in gene-specific transcriptional upregulation;Modarresi;Nat. Biotechnol.,2012

5. Long non-coding RNA targeting and transcriptional de-repression;Weinberg;Nucleic Acid Ther.,2013

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