The absence of PNPase activity in Enterococcus faecalis results in alterations of the bacterial cell-wall but induces high proteolytic and adhesion activities

被引:6
作者
Ladjouzi, Rabia [1 ]
Duban, Matthieu [1 ]
Lucau-Danila, Anca [1 ]
Drider, Djamel [1 ]
机构
[1] Univ Lille, Univ Littoral Cote Opale, Univ Liege,UMR Transfrontaliere BioEcoAgro 1158, Univ Artois,ICV,INRAE,UPJV,YNCREA, F-59000 Lille, France
关键词
polynucleotide phosphorylase (PNPase); Transcriptomic analysis; Cell envelope alterations; Proteolytic activity; Cell adhesion; SUBTILIS POLYNUCLEOTIDE PHOSPHORYLASE; BACILLUS-SUBTILIS; ESCHERICHIA-COLI; RNA DEGRADATION; LPXTG MOTIF; PROTEIN; EXONUCLEASE; POLYMERASE; EXPRESSION; VECTORS;
D O I
10.1016/j.gene.2022.146610
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Enterococci are lactic acid bacteria (LAB) used as starters and probiotics, delineating their positive attributes. Nevertheless, enterococci can be culprit for thousands of infectious diseases, including urinary tract infections, bacteremia and endocarditis. Here, we aim to determine the impact of polynucleotide phosphorylase (PNPase) in the biology of Enterococcus faecalis 14; a human isolate from meconium. Thus, a mutant strain deficient in PNPase synthesis, named delta pnpA mutant, was genetically obtained. After that, a transcriptomic study revealed a set of 244 genes differentially expressed in the delta pnpA mutant compared with the wild-type strain, when exploiting RNAs extracted from these strains after 3 and 6 h of growth. Differentially expressed genes include those involved in cell wall synthesis, adhesion, biofilm formation, bacterial competence and conjugation, stress response, transport, DNA repair and many other functions related to the primary and secondary metabolism of the bacteria. Moreover, the delta pnpA mutant showed an altered cell envelope ultrastructure compared with the WT strain, and is also distinguished by a strong adhesion capacity on eukaryotic cell as well as a high proteolytic activity. This study, which combines genetics, physiology and transcriptomics enabled us to show further biological functions that could be directly or indirectly controlled by the PNPase in E. faecalis 14.
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页数:9
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