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HNRNPA2B1 as an RNA Switch Trigger Modulate MicroRNA-Mediated Regulation of CDK6

47 Pages Posted: 7 Apr 2020 Publication Status: Review Complete

See all articles by Menghui Yin

Menghui Yin

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

Chengli Liu

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

Keli Wu

University of Science and Technology of China (USTC) - School of Life Sciences

Meidie Cheng

University of Chinese Academy of Sciences

Wei Xiong

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

Yiwei Lai

University of Chinese Academy of Sciences

Yinxiong Li

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

Biliang Zhang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

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Abstract

An RNA switch is a regulatory cis-element, and its function is dependent on RNA structure transformation, which can be triggered by specific trans-factors, other regulatory RNAs and metabolites. There are instances where the microRNA (miRNA) and the corresponding target both exist in a cell, but the target gene silencing does not occur as expected. The mechanism behind this phenomenon is worth further investigation. Our research found that both miR-506 and its target cyclin dependent kinase 6 (CDK6) were highly co-expressed in multiple lung cancer cell lines. Sequence analyses suggested that a miR-506 binding site (1648-1654) and cis-element (1785-1795) for binding by heterogeneous nuclear ribonucleoprotein A2/B1(HNRNPA2B1) are evolutionarily conserved in the 3’ untranslated region (3’UTR) of CDK6, and form a stem structure that inactivates miR-506 function. HNRNPA2B1 denatures the stem structure to release the miR-506 binding site, leading to the recruitment of the miR-506-RISC complex for CDK6 silencing. HNRNPA2B1 also recruits the RNA helicase DExH-box helicase 9 (DHX9) to the 3’UTR of its targets, enhancing the engagement of argonaute RISC catalytic component 2 (AGO2) with the 3’UTR. This result indicates that the cis-element of the 3’UTR of CDK6 where HNRNPA2B1 binds serves as an RNA switch to regulate miRNA function. Deep understanding of the molecular basis of this phenomenon may provide novel biomarker and therapeutic targets for drug development.

Keywords: microRNA, RNA binding protein, RNA switch, 3'UTR, HNRNPA2B1, CDK6, lung cancer

Suggested Citation

Yin, Menghui and Liu, Chengli and Wu, Keli and Cheng, Meidie and Xiong, Wei and Lai, Yiwei and Li, Yinxiong and Zhang, Biliang, HNRNPA2B1 as an RNA Switch Trigger Modulate MicroRNA-Mediated Regulation of CDK6. Available at SSRN: https://ssrn.com/abstract=3564985 or http://dx.doi.org/10.2139/ssrn.3564985
This version of the paper has not been formally peer reviewed.

Menghui Yin (Contact Author)

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease ( email )

China

Chengli Liu

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

China

Keli Wu

University of Science and Technology of China (USTC) - School of Life Sciences

96, Jinzhai Road
Hefei, Anhui 230026
China

Meidie Cheng

University of Chinese Academy of Sciences

Building 7, NO. 80 Zhongguancun Road
Beijing, Beijing 100190
China

Wei Xiong

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

China

Yiwei Lai

University of Chinese Academy of Sciences

Building 7, NO. 80 Zhongguancun Road
Beijing, Beijing 100190
China

Yinxiong Li

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

China

Biliang Zhang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Respiratory Disease

China

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