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Actinobaculum massiliense Proteome Profiled in Polymicrobial Urethral Catheter Biofilms

机译:分布在多菌种尿道导管生物膜中的放线放线杆菌蛋白质组。

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摘要

Actinobaculum massiliense, a Gram-positive anaerobic coccoid rod colonizing the human urinary tract, belongs to the taxonomic class of Actinobacteria. We identified A. massiliense as a cohabitant of urethral catheter biofilms (CB). The CBs also harbored more common uropathogens, such as Proteus mirabilis and Aerococcus urinae, supporting the notion that A. massiliense is adapted to a life style in polymicrobial biofilms. We isolated a clinical strain from a blood agar colony and used 16S rRNA gene sequencing and shotgun proteomics to confirm its identity as A. massiliense. We characterized this species by quantitatively comparing the bacterial proteome derived from in vitro growth with that of four clinical samples. The functional relevance of proteins with emphasis on nutrient import and the response to hostile host conditions, showing evidence of neutrophil infiltration, was analyzed. Two putative subtilisin-like proteases and a heme/oligopeptide transporter were abundant in vivo and are likely important for survival and fitness in the biofilm. Proteins facilitating uptake of xylose/glucuronate and oligopeptides, also highly expressed in vivo, may feed metabolites into mixed acid fermentation and peptidolysis pathways, respectively, to generate energy. A polyketide synthase predicted to generate a secondary metabolite that interacts with either the human host or co-colonizing microbes was also identified. The product of the PKS enzyme may contribute to A. massiliense fitness and persistence in the CBs.
机译:放线菌是一种定植在人尿道中的革兰氏阳性厌氧球菌杆,属于放线菌的分类学类别。我们确定A. massiliense是尿道导管生物膜(CB)的同伴。 CB还包含更常见的尿路致病菌,例如奇异变形杆菌和小球菌,支持麻霉曲霉适应于多种微生物生物膜的生活方式。我们从血琼脂菌落中分离出一株临床菌株,并使用16S rRNA基因测序和shot弹枪蛋白质组学来确认其身份为Massiliense。我们通过定量比较源自体外生长的细菌蛋白质组与四个临床样品的细菌蛋白质组来表征该物种。分析了蛋白质的功能相关性,重点在于营养的输入和对敌对宿主条件的反应,显示了嗜中性粒细胞浸润的证据。两种假定的枯草杆菌蛋白酶样蛋白酶和血红素/寡肽转运蛋白在体内很丰富,可能对于生物膜的存活和适应性很重要。促进体内也高度表达的木糖/葡糖醛酸酯和寡肽摄取的蛋白质可分别将代谢产物喂入混合酸发酵和肽分解途径,以产生能量。还确定了预测会产生与人类宿主或共同定殖微生物相互作用的次级代谢产物的聚酮化合物合酶。 PKS酶的产物可能有助于A. massiliense适应性和CB中的持久性。

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