Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases

Diseases caused by Rickettsiales are often overlooked, although they pose important public health concerns. The Rickettsiales family comprises a broad range of intracellular bacteria with distinct evolutionary adaptations, making the development of treatment measures to combat infections, such as va...

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Published in:Journal of Pure and Applied Microbiology
Main Author: Harun N.H.; Yuhana M.Y.; Chua A.-L.; Wang S.M.
Format: Review
Language:English
Published: Journal of Pure and Applied Microbiology 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85195790711&doi=10.22207%2fJPAM.18.2.55&partnerID=40&md5=b4e0b806f0338a91b3724c7d9d27929d
id 2-s2.0-85195790711
spelling 2-s2.0-85195790711
Harun N.H.; Yuhana M.Y.; Chua A.-L.; Wang S.M.
Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
2024
Journal of Pure and Applied Microbiology
18
2
10.22207/JPAM.18.2.55
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85195790711&doi=10.22207%2fJPAM.18.2.55&partnerID=40&md5=b4e0b806f0338a91b3724c7d9d27929d
Diseases caused by Rickettsiales are often overlooked, although they pose important public health concerns. The Rickettsiales family comprises a broad range of intracellular bacteria with distinct evolutionary adaptations, making the development of treatment measures to combat infections, such as vaccines or antibiotics, a challenge. Interestingly, the outer membrane protein A (OmpA) was found to exist in the cell surface of most human pathogenic bacteria in the order Rickettsiales. However, knowledge about OmpA in each species and strain is scattered and ambiguous. In this study, we systematically compiled the existing information on OmpA and its relationship with human pathogenic rickettsiae to serve as a reference for future research. A comprehensive literature search was conducted using specific keywords across five databases. According to the literature, OmpA of spotted fever group rickettsia plays a crucial role as an adhesin and invasin that directly interacts with the surface of mammalian host cells to mediate bacterial localization in host cells. The presence of a premature stop codon in the amino acid sequence resulted in the secretion of non-functional OmpA, which is one of the main reasons for rickettsial strains or species to become avirulent. Similarly, OmpA also functions as an important adhesin in the Anaplasma family when it interacts with the sLex and sLex-like glycan of myeloid and endothelial cells, respectively. However, the OmpA of Anaplasma must be co-functional with the other two adhesins to promote bacterial internalization. Interestingly, certain sites in the amino acid residues of Ehrlichia and Orientia OmpA are predicted to be homologous to the binding domain region of Anaplasma OmpA. It is therefore suggested that OmpA is an important adhesin for bacteria to bind to their specific mammalian host cells. © The Author(s) 2024. Open Access.
Journal of Pure and Applied Microbiology
9737510
English
Review
All Open Access; Gold Open Access
author Harun N.H.; Yuhana M.Y.; Chua A.-L.; Wang S.M.
spellingShingle Harun N.H.; Yuhana M.Y.; Chua A.-L.; Wang S.M.
Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
author_facet Harun N.H.; Yuhana M.Y.; Chua A.-L.; Wang S.M.
author_sort Harun N.H.; Yuhana M.Y.; Chua A.-L.; Wang S.M.
title Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
title_short Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
title_full Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
title_fullStr Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
title_full_unstemmed Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
title_sort Role of Rickettsial Outer Membrane Protein A in the Pathogenesis of Rickettsial Diseases
publishDate 2024
container_title Journal of Pure and Applied Microbiology
container_volume 18
container_issue 2
doi_str_mv 10.22207/JPAM.18.2.55
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85195790711&doi=10.22207%2fJPAM.18.2.55&partnerID=40&md5=b4e0b806f0338a91b3724c7d9d27929d
description Diseases caused by Rickettsiales are often overlooked, although they pose important public health concerns. The Rickettsiales family comprises a broad range of intracellular bacteria with distinct evolutionary adaptations, making the development of treatment measures to combat infections, such as vaccines or antibiotics, a challenge. Interestingly, the outer membrane protein A (OmpA) was found to exist in the cell surface of most human pathogenic bacteria in the order Rickettsiales. However, knowledge about OmpA in each species and strain is scattered and ambiguous. In this study, we systematically compiled the existing information on OmpA and its relationship with human pathogenic rickettsiae to serve as a reference for future research. A comprehensive literature search was conducted using specific keywords across five databases. According to the literature, OmpA of spotted fever group rickettsia plays a crucial role as an adhesin and invasin that directly interacts with the surface of mammalian host cells to mediate bacterial localization in host cells. The presence of a premature stop codon in the amino acid sequence resulted in the secretion of non-functional OmpA, which is one of the main reasons for rickettsial strains or species to become avirulent. Similarly, OmpA also functions as an important adhesin in the Anaplasma family when it interacts with the sLex and sLex-like glycan of myeloid and endothelial cells, respectively. However, the OmpA of Anaplasma must be co-functional with the other two adhesins to promote bacterial internalization. Interestingly, certain sites in the amino acid residues of Ehrlichia and Orientia OmpA are predicted to be homologous to the binding domain region of Anaplasma OmpA. It is therefore suggested that OmpA is an important adhesin for bacteria to bind to their specific mammalian host cells. © The Author(s) 2024. Open Access.
publisher Journal of Pure and Applied Microbiology
issn 9737510
language English
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accesstype All Open Access; Gold Open Access
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