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About:
Identification of ireA, 0007, 0008, and 2235 as TonB-dependent receptors in the avian pathogenic Escherichia coli strain DE205B
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Academic Article
research paper
schema:ScholarlyArticle
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Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
has title
Identification of ireA, 0007, 0008, and 2235 as TonB-dependent receptors in the avian pathogenic Escherichia coli strain DE205B
Creator
Sun, Yu
Liu, Yun
Jiang, Shan
Tang, Fang
Dai, Jianjun
Gong, Qianwen
Li, Yihao
Ren, Jianluan
Xue, Feng
Yu, Peixin
Zeng, Hang
Zhang, Zhonghua
Zhuge, Xiangkai
Source
PMC
abstract
Avian pathogenic Escherichia coli (APEC), a pathotype of extraintestinal pathogenic E. coli, causes one of the most serious infectious diseases of poultry and shares some common virulence genes with neonatal meningitis-associated E. coli. TonB-dependent receptors (TBDRs) are ubiquitous outer membrane β-barrel proteins; they play an important role in the recognition of siderophores during iron uptake. Here, in the APEC strain DE205B, we investigated the role of four putative TBDRs—ireA, 0007, 0008, and 2235—in iron uptake. Glutathione-S-transferase pulldown assays indicated that the proteins encoded by these genes directly interact with TonB. Moreover, the expression levels of all four genes were significantly upregulated under iron-depleted conditions compared with iron-rich conditions. The expression levels of several iron uptake-related genes were significantly increased in the ireA, 0007, 0008, and 2235 deletion strains, with the upregulation being the most prominent in the ireA deletion mutant. Furthermore, iron uptake by the ireA deletion strain was significantly increased compared to that by the wild-type strain. Moreover, a tonB mutant strain was constructed to study the effect of tonB deletion on the TBDRs. We found that regardless of the presence of tonB, the expression levels of the genes encoding the four TBDRs were regulated by fur. In conclusion, our findings indicated that ireA, 0007, 0008, and 2235 indeed encode TBDRs, with ireA having the most important role in iron uptake. These results should help future studies explore the mechanisms underlying the TonB-dependent iron uptake pathway.
has issue date
2020-01-23
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bibo:doi
10.1186/s13567-020-0734-z
bibo:pmid
31973724
has license
cc-by
sha1sum (hex)
da174e0caf661809615fc0ee7b78a22829ea9380
schema:url
https://doi.org/10.1186/s13567-020-0734-z
resource representing a document's title
Identification of ireA, 0007, 0008, and 2235 as TonB-dependent receptors in the avian pathogenic Escherichia coli strain DE205B
has PubMed Central identifier
PMC6979363
has PubMed identifier
31973724
schema:publication
Vet Res
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covid:da174e0caf661809615fc0ee7b78a22829ea9380#body_text
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schema:about
of
named entity 'iron'
named entity 'mutant'
named entity 'pathotype'
named entity 'study'
named entity 'mutant'
named entity 'pathogenic Escherichia coli'
named entity 'MUTANT'
named entity 'PATHOGENIC'
named entity 'OUR'
named entity 'RESULTS'
named entity 'DIRECTLY'
named entity 'IRON'
named entity 'UBIQUITOUS'
named entity 'COMPARED'
named entity 'upregulation'
named entity 'E. coli'
named entity 'strain'
named entity 'compared'
named entity 'encoding'
named entity 'constructed'
named entity 'conditions'
named entity 'shares'
named entity 'upregulation'
named entity 'siderophores'
named entity 'poultry'
named entity 'ireA'
named entity 'infectious diseases'
named entity 'TonB'
named entity 'E. coli'
named entity 'ireA'
named entity 'interact'
named entity 'wild-type'
named entity 'Open Access'
named entity 'Beijing'
named entity 'host tissues'
named entity '0.01'
named entity 'expression levels'
named entity 'genomic DNA'
named entity 'centrifugation'
named entity 'l-arabinose'
named entity 'APEC'
named entity 'China'
named entity 'ireA'
named entity 'receptor'
named entity 'transduce'
named entity 'induce the expression'
named entity 'LB medium'
named entity 'serotypes'
named entity 'cellulitis'
named entity 'LB medium'
named entity 'DNA replication'
named entity 'antibiotics'
named entity 'negative control'
named entity 'IreA'
named entity 'bacterial strains'
named entity 'kDa'
named entity 'kDa'
named entity 'LB medium'
named entity 'siderophores'
named entity 'gene'
named entity 'micronutrient'
named entity 'vitamins'
named entity 'poultry'
named entity 'PBS'
named entity 'fepA'
named entity 'NaCl'
named entity 'oxidized'
named entity 'genome'
named entity 'gene expression'
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