Cargando…

New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges

An outer membrane protein A (OmpA) from Acinetobacter sp. strain SA01 was identified and characterized in-depth based on the structural and functional characteristics already known of its homologues. In silico structural studies showed that this protein can be a slow porin, binds to peptidoglycan, a...

Descripción completa

Detalles Bibliográficos
Autores principales: Shahryari, Shahab, Talaee, Mahbubeh, Haghbeen, Kamahldin, Adrian, Lorenz, Vali, Hojatollah, Shahbani Zahiri, Hossein, Noghabi, Kambiz Akbari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901484/
https://www.ncbi.nlm.nih.gov/pubmed/33436517
http://dx.doi.org/10.1128/mSystems.01175-20
_version_ 1783654383714566144
author Shahryari, Shahab
Talaee, Mahbubeh
Haghbeen, Kamahldin
Adrian, Lorenz
Vali, Hojatollah
Shahbani Zahiri, Hossein
Noghabi, Kambiz Akbari
author_facet Shahryari, Shahab
Talaee, Mahbubeh
Haghbeen, Kamahldin
Adrian, Lorenz
Vali, Hojatollah
Shahbani Zahiri, Hossein
Noghabi, Kambiz Akbari
author_sort Shahryari, Shahab
collection PubMed
description An outer membrane protein A (OmpA) from Acinetobacter sp. strain SA01 was identified and characterized in-depth based on the structural and functional characteristics already known of its homologues. In silico structural studies showed that this protein can be a slow porin, binds to peptidoglycan, and exhibits emulsifying properties. Characterization of the recombinant SA01-OmpA, based on its emulsifying properties, represented its promising potentials in biotechnology. Also, the presence of SA01-OmpA in outer membrane vesicles (OMV) and biofilm showed that this protein, like its homologues in Acinetobacter baumannii, can be secreted into the extracellular environment through OMVs and play a role in the formation of biofilm. After ensuring the correct selection of the protein of interest, the role of oxidative stress induced by cell nutritional parameters (utilization of specific carbon sources) on the expression level of OmpA was carefully studied. For this purpose, the oxidative stress level of SA01 cell cultures in the presence of three nonrelevant carbon sources (sodium acetate, ethanol, and phenol) was examined under each condition. High expression of SA01-OmpA in ethanol- and phenol-fed cells with higher levels of oxidative stress than acetate suggested that oxidative stress could be a substantial factor in the regulation of SA01-OmpA expression. The significant association of SA01-OmpA expression with the levels of oxidative stress induced by cadmium and H(2)O(2), with oxidative stress-inducing properties and lack of nutritional value, confirmed that the cells tend to harness their capacities with a possible increase in OmpA production. Collectively, this study suggests a homeostasis role for OmpA in Acinetobacter sp. SA01 under oxidative stress besides assuming many other roles hitherto attributed to this protein. IMPORTANCE Acinetobacter OmpA is known as a multifaceted protein with multiple functions, including emulsifying properties. Bioemulsifiers are surface-active compounds that can disperse hydrophobic compounds in water and help increase the bioavailability of hydrophobic hydrocarbons to be used by degrading microorganisms. In this study, an OmpA from Acinetobacter sp. SA01 was identified and introduced as an emulsifier with a higher emulsifying capacity than Pseudomonas aeruginosa rhamnolipid. We also showed that the expression of this protein is not dependent on the nutritional requirements but is more influenced by the oxidative stress caused by stressors. This finding, along with the structural role of this protein as a slow porin or its role in OMV biogenesis and biofilm formation, suggests that this protein can play an important role in maintaining cellular homeostasis under oxidative stress conditions. Altogether, the present study provides a new perspective on the functional performance of Acinetobacter OmpA, which can be used both to optimize its production as an emulsifier and a target in the treatment of multidrug-resistant strains.
format Online
Article
Text
id pubmed-7901484
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-79014842021-02-24 New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges Shahryari, Shahab Talaee, Mahbubeh Haghbeen, Kamahldin Adrian, Lorenz Vali, Hojatollah Shahbani Zahiri, Hossein Noghabi, Kambiz Akbari mSystems Research Article An outer membrane protein A (OmpA) from Acinetobacter sp. strain SA01 was identified and characterized in-depth based on the structural and functional characteristics already known of its homologues. In silico structural studies showed that this protein can be a slow porin, binds to peptidoglycan, and exhibits emulsifying properties. Characterization of the recombinant SA01-OmpA, based on its emulsifying properties, represented its promising potentials in biotechnology. Also, the presence of SA01-OmpA in outer membrane vesicles (OMV) and biofilm showed that this protein, like its homologues in Acinetobacter baumannii, can be secreted into the extracellular environment through OMVs and play a role in the formation of biofilm. After ensuring the correct selection of the protein of interest, the role of oxidative stress induced by cell nutritional parameters (utilization of specific carbon sources) on the expression level of OmpA was carefully studied. For this purpose, the oxidative stress level of SA01 cell cultures in the presence of three nonrelevant carbon sources (sodium acetate, ethanol, and phenol) was examined under each condition. High expression of SA01-OmpA in ethanol- and phenol-fed cells with higher levels of oxidative stress than acetate suggested that oxidative stress could be a substantial factor in the regulation of SA01-OmpA expression. The significant association of SA01-OmpA expression with the levels of oxidative stress induced by cadmium and H(2)O(2), with oxidative stress-inducing properties and lack of nutritional value, confirmed that the cells tend to harness their capacities with a possible increase in OmpA production. Collectively, this study suggests a homeostasis role for OmpA in Acinetobacter sp. SA01 under oxidative stress besides assuming many other roles hitherto attributed to this protein. IMPORTANCE Acinetobacter OmpA is known as a multifaceted protein with multiple functions, including emulsifying properties. Bioemulsifiers are surface-active compounds that can disperse hydrophobic compounds in water and help increase the bioavailability of hydrophobic hydrocarbons to be used by degrading microorganisms. In this study, an OmpA from Acinetobacter sp. SA01 was identified and introduced as an emulsifier with a higher emulsifying capacity than Pseudomonas aeruginosa rhamnolipid. We also showed that the expression of this protein is not dependent on the nutritional requirements but is more influenced by the oxidative stress caused by stressors. This finding, along with the structural role of this protein as a slow porin or its role in OMV biogenesis and biofilm formation, suggests that this protein can play an important role in maintaining cellular homeostasis under oxidative stress conditions. Altogether, the present study provides a new perspective on the functional performance of Acinetobacter OmpA, which can be used both to optimize its production as an emulsifier and a target in the treatment of multidrug-resistant strains. American Society for Microbiology 2021-01-12 /pmc/articles/PMC7901484/ /pubmed/33436517 http://dx.doi.org/10.1128/mSystems.01175-20 Text en Copyright © 2021 Shahryari et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Shahryari, Shahab
Talaee, Mahbubeh
Haghbeen, Kamahldin
Adrian, Lorenz
Vali, Hojatollah
Shahbani Zahiri, Hossein
Noghabi, Kambiz Akbari
New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges
title New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges
title_full New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges
title_fullStr New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges
title_full_unstemmed New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges
title_short New Provisional Function of OmpA from Acinetobacter sp. Strain SA01 Based on Environmental Challenges
title_sort new provisional function of ompa from acinetobacter sp. strain sa01 based on environmental challenges
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901484/
https://www.ncbi.nlm.nih.gov/pubmed/33436517
http://dx.doi.org/10.1128/mSystems.01175-20
work_keys_str_mv AT shahryarishahab newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges
AT talaeemahbubeh newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges
AT haghbeenkamahldin newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges
AT adrianlorenz newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges
AT valihojatollah newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges
AT shahbanizahirihossein newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges
AT noghabikambizakbari newprovisionalfunctionofompafromacinetobacterspstrainsa01basedonenvironmentalchallenges