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Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick

Q fever is one of the most important zoonotic diseases caused by the obligate intracellular bacteria, Coxiella burnetii. This bacterial infection has been frequently reported in both humans and animals, especially ruminants. Ticks are important ectoparasite and serve as reservoir hosts of Coxiella-l...

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Autores principales: Nooroong, Pornpiroon, Trinachartvanit, Wachareeporn, Baimai, Visut, Anuracpreeda, Panat, Ahantarig, Arunee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8016282/
https://www.ncbi.nlm.nih.gov/pubmed/33793664
http://dx.doi.org/10.1371/journal.pone.0249354
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author Nooroong, Pornpiroon
Trinachartvanit, Wachareeporn
Baimai, Visut
Anuracpreeda, Panat
Ahantarig, Arunee
author_facet Nooroong, Pornpiroon
Trinachartvanit, Wachareeporn
Baimai, Visut
Anuracpreeda, Panat
Ahantarig, Arunee
author_sort Nooroong, Pornpiroon
collection PubMed
description Q fever is one of the most important zoonotic diseases caused by the obligate intracellular bacteria, Coxiella burnetii. This bacterial infection has been frequently reported in both humans and animals, especially ruminants. Ticks are important ectoparasite and serve as reservoir hosts of Coxiella-like endosymbionts (CLEs). In this study, we have attempted to express chaperone-coding genes from CLEs of Rhipicephalus annulatus ticks collected fromcow path. The partial DnaK coding sequence has been amplified and expressed by Escherichia coli. Amino acid sequences have been analyzed by MS-MS spectrometry and the UniProt database. Despites nucleotide sequences indicating high nucleotide variation and diversity, many nucleotide substitutions are synonymous. In addition, amino acid substitutions compensate for the physicochemical properties of the original amino acids. Immune Epitope Database and Analysis Resource (IEDB-AR) was employed to indicate the antigenicity of the partial DnaK protein and predict the epitopes of B-and T-cells. Interestingly, some predicted HLA-A and B alleles of the MHC-I and HLA-DR alleles belonging to MHC-II were similar to T-cell responses to C. burnetii in Q fever patients. Therefore, the partial DnaK protein of CLE from R. annulatus could be considered a vaccine candidate and immunogenic marker with future prospects.
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spelling pubmed-80162822021-04-08 Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick Nooroong, Pornpiroon Trinachartvanit, Wachareeporn Baimai, Visut Anuracpreeda, Panat Ahantarig, Arunee PLoS One Research Article Q fever is one of the most important zoonotic diseases caused by the obligate intracellular bacteria, Coxiella burnetii. This bacterial infection has been frequently reported in both humans and animals, especially ruminants. Ticks are important ectoparasite and serve as reservoir hosts of Coxiella-like endosymbionts (CLEs). In this study, we have attempted to express chaperone-coding genes from CLEs of Rhipicephalus annulatus ticks collected fromcow path. The partial DnaK coding sequence has been amplified and expressed by Escherichia coli. Amino acid sequences have been analyzed by MS-MS spectrometry and the UniProt database. Despites nucleotide sequences indicating high nucleotide variation and diversity, many nucleotide substitutions are synonymous. In addition, amino acid substitutions compensate for the physicochemical properties of the original amino acids. Immune Epitope Database and Analysis Resource (IEDB-AR) was employed to indicate the antigenicity of the partial DnaK protein and predict the epitopes of B-and T-cells. Interestingly, some predicted HLA-A and B alleles of the MHC-I and HLA-DR alleles belonging to MHC-II were similar to T-cell responses to C. burnetii in Q fever patients. Therefore, the partial DnaK protein of CLE from R. annulatus could be considered a vaccine candidate and immunogenic marker with future prospects. Public Library of Science 2021-04-01 /pmc/articles/PMC8016282/ /pubmed/33793664 http://dx.doi.org/10.1371/journal.pone.0249354 Text en © 2021 Nooroong et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Nooroong, Pornpiroon
Trinachartvanit, Wachareeporn
Baimai, Visut
Anuracpreeda, Panat
Ahantarig, Arunee
Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick
title Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick
title_full Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick
title_fullStr Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick
title_full_unstemmed Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick
title_short Partial DnaK protein expression from Coxiella-like endosymbiont of Rhipicephalus annulatus tick
title_sort partial dnak protein expression from coxiella-like endosymbiont of rhipicephalus annulatus tick
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8016282/
https://www.ncbi.nlm.nih.gov/pubmed/33793664
http://dx.doi.org/10.1371/journal.pone.0249354
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