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粪肠球菌中不和谐的明胶酶基因型和表型是由于关闭了对明胶酶生物合成激活信息素(GBAP)群体感应信号的反应能力。

The incongruent gelatinase genotype and phenotype in Enterococcus faecalis are due to shutting off the ability to respond to the gelatinase biosynthesis-activating pheromone (GBAP) quorum-sensing signal.

机构信息

IBET, Quinta do Marquês, Estação Agronómica Nacional, Apartado 12, 2781-901 Oeiras, Portugal.

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Apartado 127, 2781-901 Oeiras, Portugal.

出版信息

Microbiology (Reading). 2012 Feb;158(Pt 2):519-528. doi: 10.1099/mic.0.055574-0. Epub 2011 Nov 24.

DOI:10.1099/mic.0.055574-0
PMID:22117005
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4083509/
Abstract

The concomitant presence of a complete fsr quorum-sensing system and gelE-sprE operons in Enterococcus faecalis is known to be essential for the detection of gelatinase activity. However, there are reports of the absence of gelatinase activity despite the presence of complete fsr and gelE loci. In order to understand this incongruence between genotype and phenotype we sequenced fsr and gelE loci of the E. faecalis LN68 strain, which was previously found to carry both operons but to lack gelatinase activity. Of the 59 nucleotide differences detected compared with the gelatinase-positive V583 strain, we found a nonsense mutation (a premature STOP codon) predicted to truncate the ATPase sensor domain of the FsrC protein, responsible for sensing and transducing the signal from the quorum-sensing molecule. Strain LN68 was highly affected in the expression of the gelE and sprE genes, further supporting the lack of Fsr-dependent gelE induction. When we constructed a V583 mutant with the same premature stop mutation in the fsrC gene the resulting strain was no longer able to degrade gelatin. We conclude that the reduced ability to transduce the quorum-sensing signal of the prematurely truncated FsrC protein is sufficient to explain the negative gelatinase phenotype. As the incongruent genotype and phenotype is detected in natural isolates, we believe that the silencing of the quorum-sensing system Fsr may be beneficial for some E. faecalis strains.

摘要

肠球菌中完整的 fsr 群体感应系统和 gelE-sprE 操纵子的共存被认为是检测明胶酶活性所必需的。然而,有报道称尽管存在完整的 fsr 和 gelE 基因座,但缺乏明胶酶活性。为了理解基因型和表型之间的这种不一致,我们对先前发现同时携带这两个操纵子但缺乏明胶酶活性的肠球菌 LN68 菌株的 fsr 和 gelE 基因座进行了测序。与明胶酶阳性 V583 菌株相比,我们检测到 59 个核苷酸差异,其中包括一个无义突变(提前终止密码子),预测该突变会截断 FsrC 蛋白的 ATP 酶感应结构域,该结构域负责感应和转导群体感应分子的信号。与 V583 菌株相比,LN68 菌株的 gelE 和 sprE 基因表达受到严重影响,进一步支持了 Fsr 依赖性 gelE 诱导的缺乏。当我们在 fsrC 基因中构建具有相同提前终止突变的 V583 突变株时,该菌株不再能够降解明胶。我们得出结论,过早截断的 FsrC 蛋白降低了群体感应信号转导的能力,足以解释阴性明胶酶表型。由于在天然分离株中检测到不一致的基因型和表型,我们认为群体感应系统 Fsr 的沉默可能对某些肠球菌菌株有益。

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