TY - JOUR
T1 - A new framework for host-pathogen interaction research
AU - Yu, Hong
AU - Li, Li
AU - Huffman, Anthony
AU - Beverley, John
AU - Hur, Junguk
AU - Merrell, Eric
AU - Huang, Hsin Hui
AU - Wang, Yang
AU - Liu, Yingtong
AU - Ong, Edison
AU - Cheng, Liang
AU - Zeng, Tao
AU - Zhang, Jingsong
AU - Li, Pengpai
AU - Liu, Zhiping
AU - Wang, Zhigang
AU - Zhang, Xiangyan
AU - Ye, Xianwei
AU - Handelman, Samuel K.
AU - Sexton, Jonathan
AU - Eaton, Kathryn
AU - Higgins, Gerry
AU - Omenn, Gilbert S.
AU - Athey, Brian
AU - Smith, Barry
AU - Chen, Luonan
AU - He, Yongqun
N1 - Publisher Copyright:
Copyright © 2022 Yu, Li, Huffman, Beverley, Hur, Merrell, Huang, Wang, Liu, Ong, Cheng, Zeng, Zhang, Li, Liu, Wang, Zhang, Ye, Handelman, Sexton, Eaton, Higgins, Omenn, Athey, Smith, Chen and He.
PY - 2022/12/15
Y1 - 2022/12/15
N2 - COVID-19 often manifests with different outcomes in different patients, highlighting the complexity of the host-pathogen interactions involved in manifestations of the disease at the molecular and cellular levels. In this paper, we propose a set of postulates and a framework for systematically understanding complex molecular host-pathogen interaction networks. Specifically, we first propose four host-pathogen interaction (HPI) postulates as the basis for understanding molecular and cellular host-pathogen interactions and their relations to disease outcomes. These four postulates cover the evolutionary dispositions involved in HPIs, the dynamic nature of HPI outcomes, roles that HPI components may occupy leading to such outcomes, and HPI checkpoints that are critical for specific disease outcomes. Based on these postulates, an HPI Postulate and Ontology (HPIPO) framework is proposed to apply interoperable ontologies to systematically model and represent various granular details and knowledge within the scope of the HPI postulates, in a way that will support AI-ready data standardization, sharing, integration, and analysis. As a demonstration, the HPI postulates and the HPIPO framework were applied to study COVID-19 with the Coronavirus Infectious Disease Ontology (CIDO), leading to a novel approach to rational design of drug/vaccine cocktails aimed at interrupting processes occurring at critical host-coronavirus interaction checkpoints. Furthermore, the host-coronavirus protein-protein interactions (PPIs) relevant to COVID-19 were predicted and evaluated based on prior knowledge of curated PPIs and domain-domain interactions, and how such studies can be further explored with the HPI postulates and the HPIPO framework is discussed.
AB - COVID-19 often manifests with different outcomes in different patients, highlighting the complexity of the host-pathogen interactions involved in manifestations of the disease at the molecular and cellular levels. In this paper, we propose a set of postulates and a framework for systematically understanding complex molecular host-pathogen interaction networks. Specifically, we first propose four host-pathogen interaction (HPI) postulates as the basis for understanding molecular and cellular host-pathogen interactions and their relations to disease outcomes. These four postulates cover the evolutionary dispositions involved in HPIs, the dynamic nature of HPI outcomes, roles that HPI components may occupy leading to such outcomes, and HPI checkpoints that are critical for specific disease outcomes. Based on these postulates, an HPI Postulate and Ontology (HPIPO) framework is proposed to apply interoperable ontologies to systematically model and represent various granular details and knowledge within the scope of the HPI postulates, in a way that will support AI-ready data standardization, sharing, integration, and analysis. As a demonstration, the HPI postulates and the HPIPO framework were applied to study COVID-19 with the Coronavirus Infectious Disease Ontology (CIDO), leading to a novel approach to rational design of drug/vaccine cocktails aimed at interrupting processes occurring at critical host-coronavirus interaction checkpoints. Furthermore, the host-coronavirus protein-protein interactions (PPIs) relevant to COVID-19 were predicted and evaluated based on prior knowledge of curated PPIs and domain-domain interactions, and how such studies can be further explored with the HPI postulates and the HPIPO framework is discussed.
KW - COVID-19
KW - COVID-19 cocktail
KW - HPIPO framework
KW - bioinformatics
KW - coronavirus infectious disease ontology (CIDO)
KW - disease outcome
KW - host-coronavirus interaction
KW - host-pathogen interaction
UR - https://www.scopus.com/pages/publications/85145275372
U2 - 10.3389/fimmu.2022.1066733
DO - 10.3389/fimmu.2022.1066733
M3 - Article
C2 - 36591248
AN - SCOPUS:85145275372
SN - 1664-3224
VL - 13
JO - Frontiers in Immunology
JF - Frontiers in Immunology
M1 - 1066733
ER -