Automated SSHHPS Analysis Predicts a Potential Host Protein Target Common to Several Neuroinvasive (+)ssRNA Viruses

Author:

Doctor Katarina Z.1ORCID,Gilmour Elizabeth1,Recarte Marilyn2,Beatty Trinity R.3,Shifa Intisar4,Stangel Michaela5,Schwisow Jacob5,Leary Dagmar H.6,Legler Patricia M.6ORCID

Affiliation:

1. Navy Center for Applied Research in AI (NCARAI) Information Technology Division, U.S. Naval Research Laboratory, Washington, DC 20375, USA

2. Computer Science Department, Oberlin College, Oberlin, OH 44074, USA

3. Biology Department, Winston-Salem State University, Winston-Salem, NC 27110, USA

4. Biology Department, Norfolk State University, Norfolk, VA 23504, USA

5. Chemistry Department, US Naval Academy, Annapolis, MD 21402, USA

6. Center for Biomolecular Science and Engineering (CBMSE), U.S. Naval Research Laboratory, Washington, DC 20375, USA

Abstract

Within the viral genome, short stretches of homologous host pathogen sequences (SSHHPS) span the protease cleavage sites. To identify host proteins that may be cleaved during infection, we searched the human proteome for viral protease cleavage sites (~20 amino acids). We developed a sequence-to-symptom tool, automating the search and pairing process. We used the viral protein sequence, PHI-BLAST, and UniProt database for gene ontologies and disease relationships. We applied the tool to nine neuroinvasive viruses: Venezuelan and Eastern Equine encephalitis virus (VEEV, EEEV); severe acute respiratory syndrome (SARS, SARS-CoV-2); Middle East respiratory syndrome (MERS); EV-71; Japanese encephalitis virus (JEV); West Nile (WNV); and Zika (ZIKV). A comparison of the hits identified a protein common to all nine viruses called ADGRA2 (GPR124). ADGRA2 was a predicted hit of the 3CL main protease and papain-like protease (PLpro) of SARS-CoV-2. ADGRA2 is an adhesion G protein-coupled receptor and a key endothelial regulator of brain-specific angiogenesis. It is a Wnt7A/Wnt7B specific coactivator of beta-catenin signaling and is essential for blood–brain barrier (BBB) integrity in central nervous system (CNS) diseases. We show the cleavage of the predicted sequences in MYOM1, VWF by the SARS-CoV-2 PLpro; DNAH8 (dynein) by the MERS PLpro; ADGRA2 by the alphaviral VEEV nsP2 protease; and POT1 by the SARS-CoV-2 and MERS PLpro.

Funder

ONR 6.1 Core Base Funds

Naval Innovative Science & Engineering

Publisher

MDPI AG

Subject

Virology,Infectious Diseases

Reference53 articles.

1. Proteolytic cleavage of host proteins by the Group IV viral proteases of Venezuelan equine encephalitis virus and Zika virus;Morazzani;Antivir. Res.,2019

2. The SARS-CoV-2 SSHHPS Recognized by the Papain-like Protease;Reynolds;ACS Infect. Dis.,2021

3. Analysis of Group IV Viral SSHHPS Using In Vitro and In Silico Methods;Hu;J. Vis. Exp. JoVE,2019

4. The mechanism of RNA recombination in poliovirus;Kirkegaard;Cell,1986

5. Host-related sequences in RNA viral genomes;Gorbalenya;Semin. Virol.,1992

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