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首页> 外文期刊>Microbiology >Identification and phenotypic characterization of a second collagen adhesin, Scm, and genome-based identification and analysis of 13 other predicted MSCRAMMs, including four distinct pilus loci, in Enterococcus faecium
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Identification and phenotypic characterization of a second collagen adhesin, Scm, and genome-based identification and analysis of 13 other predicted MSCRAMMs, including four distinct pilus loci, in Enterococcus faecium

机译:第二胶原粘蛋白,SCM和基于基因组的鉴定和分析的鉴定和表型表征和13个其他预测MSCRAMM的鉴定和分析,包括肠球菌粪便中的四个不同的菌斑

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Attention has recently been drawn to Enterococcus faecium because of an increasing number of nosocomial infections caused by this species and its resistance to multiple antibacterial agents. However, relatively little is known about the pathogenic determinants of this organism. We have previously identified a cell-wall-anchored collagen adhesin, Acm, produced by some isolates of E. faecium, and a secreted antigen, SagA, exhibiting broad-spectrum binding to extracellular matrix proteins. Here, we analysed the draft genome of strain TX0016 for potential microbial surface components recognizing adhesive matrix molecules (MSCRAMMs). Genome-based bioinformatics identified 22 predicted cell-wall-anchored E. faecium surface proteins (Fms), of which 15 (including Acm) had characteristics typical of MSCRAMMs, including predicted folding into a modular architecture with multiple immunoglobulin-like domains. Functional characterization of one [Fms10; redesignated second collagen adhesin of E. faecium (Scm)] revealed that recombinant Scm65 (A- and B-domains) and Scm36 (A-domain) bound to collagen type V efficiently in a concentration-dependent manner, bound considerably less to collagen type I and fibrinogen, and differed from Acm in their binding specificities to collagen types IV and V. Results from far-UV circular dichroism measurements of recombinant Scm36 and of Acm37 indicated that these proteins were rich in β-sheets, supporting our folding predictions. Whole-cell ELISA and FACS analyses unambiguously demonstrated surface expression of Scm in most E. faecium isolates. Strikingly, 11 of the 15 predicted MSCRAMMs clustered in four loci, each with a class C sortase gene; nine of these showed similarity to Enterococcus faecalis Ebp pilus subunits and also contained motifs essential for pilus assembly. Antibodies against one of the predicted major pilus proteins, Fms9 (redesignated EbpCfm), detected a ‘ladder’ pattern of high-molecular-mass protein bands in a Western blot analysis of cell surface extracts from E. faecium, suggesting that EbpCfm is polymerized into a pilus structure. Further analysis of the transcripts of the corresponding gene cluster indicated that fms1 (ebpAfm), fms5 (ebpBfm) and ebpCfmare co-transcribed, a result consistent with those for pilus-encoding gene clusters of other Gram-positive bacteria. All 15 genes occurred frequently in 30 clinically derived diverse E. faecium isolates tested. The common occurrence of MSCRAMM- and pilus-encoding genes and the presence of a second collagen-binding protein may have important implications for our understanding of this emerging pathogen.
机译:由于该物种越来越多的医院感染及其对多种抗菌剂的抵抗力,最近被提取到肠球菌粪便的注意力。然而,关于这种生物的致病决定簇,相对较少。我们之前鉴定了一种细胞壁固定的胶粘剂粘附粘剂,ACM,由一些分离物产生的E.粪便和分泌的抗原,SAGA产生,表现出与细胞外基质蛋白的广谱结合。在这里,我们分析了抑制粘合剂基质分子的潜在微生物表面成分的菌株TX0016的基因组草稿(MSCRAMMS)。基于基于基于基于基于的基于细胞 - 壁锚定的E.粪便表面蛋白(FMS),其中15(包括ACM)具有典型的MSCRAMMS的特征,包括预测折叠成具有多种免疫球蛋白样域的模块化结构。一个[FMS10;的功能表征; E. FaeCium(SCM)的重新设计的第二胶原胶粘剂揭示了重组SCM65(A-和B域)和SCM36(A-域)以浓度依赖性方式有效地与胶原型V结合,相当于胶原蛋白I和纤维蛋白原,并在其对胶原蛋白酶IV和V的结合特异性中不同于ACM。重组SCM36和ACM37的FAR-UV圆形二色性测量结果表明这些蛋白质富含β-薄片,支持我们的折叠预测。全细胞ELISA和FACS在大多数E. FAECIUM分离株中分析明确证明SCM的表面表达。引人注目的是,15个将MSCRMMB中的11个在四个基因座中聚集在一起,每次都有C类分选酶基因;这些与肠球菌粪便EBP Pilus亚基的九个显示相似性,并且还包含对Pilus大会必不可少的主题。针对预测的主要菌革蛋白FMS9(重新设计的EBPCFM)中的一种抗体检测了来自E. FAECIUM的细胞表面提取物的蛋白质印迹分析中的“梯形”图案,表明EBPCFM聚合到痔疮结构。进一步分析相应基因簇的转录物表明FMS1(EBPAFM),FMS5(EBPBFM)和EBPCFMARE共转录,结果一致,其与其他革兰氏阳性细菌的菌刺编码基因簇一致。所有15个基因经常发生在30个临床衍生的各种E.粪便分离物中。编码基因的常见发生和第二胶原结合蛋白的存在可能对我们对这种新出现的病原体的理解具有重要意义。

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