Structural insights into the N-terminal APHB domain of HrpA: mediating canonical and i-motif recognition

Author:

Xin Ben-Ge1,Huang Ling-Yun1,Yuan Ling-Gang1,Liu Na-Nv1,Li Hai-Hong1,Ai Xia1,Lei Dong-Sheng23,Hou Xi-Miao1ORCID,Rety Stephane4ORCID,Xi Xu-Guang15ORCID

Affiliation:

1. College of Life Sciences, Northwest A&F University , Yangling , Shaanxi  712100 , China

2. School of Physical Science and Technology, Electron Microscopy Centre of Lanzhou University, Lanzhou University , Lanzhou  730000 , People's Republic of China

3. Key Laboratory of Magnetism and Magnetic Materials of Ministry of Education, Lanzhou University , Lanzhou  730000 , People's Republic of China

4. LBMC, ENS de Lyon, CNRS , UMR 5239, Inserm, U1293, Universite Claude Bernard Lyon 1, 46 allee d'Italie F-69364 Lyon, France

5. Laboratoirede de Biologie et Pharmacologie Appliquée(LBPA), CNRS UMR8113, ENS Paris-Saclay, Université Paris-Saclay , F-91190  Gif-sur-Yvette , France

Abstract

Abstract RNA helicases function as versatile enzymes primarily responsible for remodeling RNA secondary structures and organizing ribonucleoprotein complexes. In our study, we conducted a systematic analysis of the helicase-related activities of Escherichia coli HrpA and presented the structures of both its apo form and its complex bound with both conventional and non-canonical DNAs. Our findings reveal that HrpA exhibits NTP hydrolysis activity and binds to ssDNA and ssRNA in distinct sequence-dependent manners. While the helicase core plays an essential role in unwinding RNA/RNA and RNA/DNA duplexes, the N-terminal extension in HrpA, consisting of three helices referred to as the APHB domain, is crucial for ssDNA binding and RNA/DNA duplex unwinding. Importantly, the APHB domain is implicated in binding to non-canonical DNA structures such as G-quadruplex and i-motif, and this report presents the first solved i-motif-helicase complex. This research not only provides comprehensive insights into the multifaceted roles of HrpA as an RNA helicase but also establishes a foundation for further investigations into the recognition and functional implications of i-motif DNA structures in various biological processes.

Funder

National Natural Science Foundation of China

Northwest A&F University Startup Funding for Xu-Guang Xi

Publisher

Oxford University Press (OUP)

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