Author:
Chen Zhanyi,Niu Chenguang,Wei Lifan,Huang Zhengwei,Ran Shujun
Abstract
AbstractEnterococcus faecalis, a formidable nosocomial and community-acquired opportunistic pathogen, can persist a wide range of extreme environments, including low pH and nutrient deficiency. Clarifying the survival mechanism of E. faecalis in low-pH conditions is the key to combating the infectious diseases caused by E. faecalis. In this study, we combined transcriptome profiling (RNA-seq) and transposon insertion sequencing (TIS) to comprehensively understand the genes that confer these features on E. faecalis. The metadata showed that genes whose products are involved in cation transportation and amino acid biosynthesis were predominantly differentially expressed under acid conditions. The products of genes such as opp1C and copY reduced the hydrion concentration in the cell, whereas those of gldA2, gnd2, ubiD, and ubiD2 mainly participated in amino metabolism, increasing matters to neutralize excess acid. These, together with the folE and hexB genes, which are involved in mismatch repair, form a network of E. faecalis genes necessary for its survival under acid conditions.
Funder
National Natural Science Foundation of China
Science and Technology Commission of Shanghai Municipality
National Clinical Research Center for Oral Diseases
Shanghai Clinical Research Center for Oral Diseases
Shanghai Ninth People’s Hospital affiliated with Shanghai Jiao Tong University, School of Medicine
Publisher
Springer Science and Business Media LLC