A circular RNA-gawky-chromatin regulatory axis modulates stress-induced transcription

Author:

Su Rui1,Zhou Min23,Lin Jiamei1,Shan Ge4ORCID,Huang Chuan1ORCID

Affiliation:

1. School of Life Sciences, Chongqing University , Chongqing 401331 , China

2. Department of Obstetrics and Gynecology, Women and Children's Hospital of Chongqing Medical University , Chongqing 401147 , China

3. Department of Obstetrics and Gynecology, Chongqing Health Center for Women and Children , Chongqing 401147 , China

4. School of Basic Medical Sciences, Division of Life Science and Medicine, University of Science and Technology of China , Hefei 230027 , China

Abstract

Abstract In response to heavy metal stress, the RNA-binding protein (RBP) gawky translocates into the nucleus and acts as a chromatin-interacting factor to activate the transcription of many stress-responsive genes. However, the upstream regulators of gawky-mediated transcription and their mechanistic details remain unknown. Here, we identified a class of metal-responsive element-containing circRNAs (MRE circRNAs) which specifically interact with gawky during copper stress. Using classic stress-responsive genes as a readout (Drosophila MT), we found that overexpression of MRE circRNAs led to a significant repression in stress-induced transcription. Mechanistically, MRE circRNAs promote the dissociation of gawky from chromatin and increase its aberrant cytoplasmic accumulation, which ultimately impedes the loading of RNA polymerase II to the active gene loci. The MRE motif serves as an important RNA regulon for maintaining the circRNA–gawky interaction, loss of which impaired the inhibitory effects of MRE circRNAs on gawky. Through RNA-seq analyses, we then identified over 500 additional stress-responsive genes whose induced transcription was attenuated upon MRE circRNA overexpression. Finally, we uncovered the physiological relevance of MRE circRNA-mediated regulation in cellular defense against copper overloading. Taken together, this study proposes that the circRNA-RBP-chromatin axis may represent a fundamental regulatory network for gene expression in eukaryotic cells.

Funder

National Natural Science Foundation of China

Chongqing Talents Plan for Young Talents

Fundamental Research Funds for the Central Universities of China

Innovation Support Program for Overseas Returned Scholars of Chongqing, China

Publisher

Oxford University Press (OUP)

Reference86 articles.

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