首页> 外文期刊>Journal of bacteriology >The Adherence-Associated Lipoprotein P100, Encoded by an opp Operon Structure, Functions as the Oligopeptide-Binding Domain OppA of a Putative Oligopeptide Transport System in Mycoplasma hominis
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The Adherence-Associated Lipoprotein P100, Encoded by an opp Operon Structure, Functions as the Oligopeptide-Binding Domain OppA of a Putative Oligopeptide Transport System in Mycoplasma hominis

机译:通过opp操纵子结构编码的脂蛋白P100的粘附相关,作为人型支原体中假定的寡肽转运系统的寡肽结合域OppA。

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Mycoplasma hominis, a cell-wall-less prokaryote, was shown to be cytoadherent by the participation of a 100-kDa membrane protein (P100). To identify the gene encoding P100, peptides of P100 were partially sequenced to enable the synthesis of P100-specific oligonucleotides suitable as probes for the detection of the P100 gene. With this strategy, we identified a genomic region of about 10.4 kb inM. hominis FBG carrying the P100 gene. Analysis of the complete deduced protein sequence suggests that P100 is expressed as a pre-lipoprotein with a structure in the N-terminal region common to peptide-binding proteins and an ATP- or GTP-binding P-loop structure in the C-terminal region. Downstream of the P100 gene, an additional four open reading frames putatively encoding the four core domains of an active transport system, OppBCDF, were localized. The organization of the P100 gene and oppBCDF in a transcriptionally active operon structure was demonstrated in Northern blot and reverse transcription-PCR analyses, as all gene-specific probes detected a common RNA of 9.5 kb. Primer extension analysis revealed that the transcriptional initiation site was localized 323 nucleotides upstream of the methionine-encoding ATG of the P100 gene. The peptide-binding character of the P100 protein was confirmed by fluorescence spectroscopy and strongly suggests that the cytoadherence-mediating lipoprotein P100 represents OppA, the substrate-binding domain of a peptide transport system in M. hominis.
机译:一种无细胞壁的原核生物 hominis ,通过100 kDa膜蛋白(P100)的参与具有细胞粘附性。为了鉴定编码P100的基因,对P100的肽进行部分测序以使得能够合成适合作为用于检测P100基因的探针的P100特异性寡核苷酸。通过这种策略,我们在em中鉴定出约10.4kb的基因组区域。携带P100基因的人FBG。对完整推导的蛋白质序列的分析表明,P100被表达为一种前脂蛋白,其结构在N端区域具有与肽结合蛋白相同的结构,在C端区域具有ATP或GTP结合的P环结构。在P100基因的下游,还定位了另外四个假定编码为主动转运系统OppBCDF的四个核心域的开放阅读框。在Northern印迹和逆转录PCR分析中证明了P100基因和 oppBCDF 在转录活性操纵子结构中的组织,因为所有基因特异性探针均检测到9.5 kb的共同RNA。引物延伸分析表明,转录起始位点位于P100基因蛋氨酸编码ATG上游323个核苷酸处。通过荧光光谱证实了P100蛋白的肽结合特性,并强烈暗示了介导细胞粘附的脂蛋白P100代表OppA,OppA是 M中肽转运系统的底物结合域。原始人

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