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首页> 外文期刊>Folia microbiologica >Error-prone PCR mutagenesis and reverse bacterial two-hybrid screening identify a mutation in asparagine 53 of the Staphylococcus aureus ESAT6-like component EsxB that perturbs interaction with EsxD
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Error-prone PCR mutagenesis and reverse bacterial two-hybrid screening identify a mutation in asparagine 53 of the Staphylococcus aureus ESAT6-like component EsxB that perturbs interaction with EsxD

机译:易于PCR诱变和逆向细菌双杂化筛选鉴定副吡喃葡萄球菌ESAT6样组分ESXB的天冬酰胺53中的突变,其与ESXD相互作用

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摘要

The ESAT6-like Secretion System (ESS) of the human pathogen Staphylococcus aureus secretes heterodimeric virulence effectors such as EsxB and EsxD. To gain insights into the nature of EsxB-EsxD interaction, randomly mutated esxB generated by error-prone PCR was co-transformed together with esxD as adenylate cyclase fusion constructs into cyclase-deficient Escherichia coli, followed by reverse bacterial two-hybrid screening. Three color species were observed: dark blue, light blue, and white (no EsxB-EsxD interaction). The esxB from white colonies was subjected to standard PCR to check for gene signal, followed by SDS-PAGE for variant stability assessment. The gene coding for a stable EsxB variant that perturbed interaction with EsxD was further subjected to DNA sequencing. A single point mutation in esxB at position 157 was identified, leading to an amino acid change from asparagine to aspartic acid at position 53 in the resulting protein. Structural modeling of EsxB reveals that N53 is surface exposed. Whereas N53S substitution by site-directed mutagenesis retained heterodimerization with EsxD, N53A substitution abrogated such interaction. In addition, N53D change in EsxB did not alter interaction with EssG, another soluble component of the ESS pathway, suggesting minimal impact of the N53D substitution on EsxB stability and solubility. Taken together, these data provide new insights into the nature of EsxB-EsxD interaction and offer a systematic approach for in vivo analysis of protein-protein interactions of pathogenic bacteria in non-pathogenic hosts.
机译:人病原体金黄色葡萄球菌的ESAT6样分泌系统(ESS)分泌异二聚体毒力效应,例如ESXB和ESXD。为了进入ESXB-ESXD相互作用的性质,易于PCR产生的随机突变的ESXB与ESXD作为腺苷酸环酶融合构建体共转化为环酶缺陷的大肠杆菌,然后是反向细菌双杂化筛选。观察到三种颜色种类:深蓝色,浅蓝色和白色(无ESXB-ESXD相互作用)。对白色菌落的ESXB进行标准PCR检查基因信号,然后进行SDS-PAGE进行变异稳定性评估。编码用于稳定的ESXB变体的基因,其扰动与ESXD的相互作用进一步进行DNA测序。鉴定了在第157位的ESXB中的单点突变,导致从所得蛋白质中的53位从天冬酰胺转氨到天冬氨酸的氨基酸。 ESXB的结构建模显示,N53是表面暴露的。虽然N53S通过点定向诱变替代,但与ESXD保留的异二聚化,N53A替代废除这种相互作用。此外,ESXB的N53D变化没有改变与ESSG的另一个可溶性组分的ESSG途径,表明N53D取代对ESXB稳定性和溶解度的最小影响。总之,这些数据为ESXB-ESXD相互作用的性质提供了新的见解,并提供了在非致病宿主中致病性细菌的蛋白质 - 蛋白质相互作用体内分析的系统方法。

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