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Identification of RanBMP interacting with Shigella flexneri IpaC invasin by two-hybrid system of yeast

机译:酵母双杂交系统鉴定RanBMP与弗氏志贺氏菌IpaC侵袭素相互作用

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AIM: Bacillary dysentery caused by Shigella flexneri is still a threat to human health. Of four invasion plasmid antigen proteins (IpaA,B,C and D), IpaC plays an important role in the pathogenicity of this pathogen. The purpose of this study was to investigate the proteins interacting with IpaC in the host cell during the pathogenic process of this disease. METHODS: By applying two-hybrid system, the bait plasmid containing ipaC gene was constructed and designated pGBKT-ipaC. The bait plasmid was transformed AH109, and proved to express IpaC and then HeLa cDNA library plasmids were introduced into the above transformed AH109. The transformation mixture was plated on medium lacking Trp, Leu, and His in the initial screen, then restreaked on medium lacking Trp, Leu, His and Ade. Colonies growing on the selection medium were further assayed for β-galactosidase activity. BLAST was carried out in the database after sequencing the inserted cDNA of the positive library plasmid. RESULTS: Among the 2xl0~6 transformants, 64 positive clones were obtained as determined by activation of His, Ade and LacZ reporter genes. Sequence analysis revealed that cDNA inserts of two colonies were highly homologous to a known human protein, RanBPM. CONCLUSION: These results provide evidence that IpaC may be involved in the invasion process of S. flexneri by interacting with RanBPM, and RanBPM is most likely to be the downstream target of IpaC in the cascade events of S. flexneri infection.
机译:目的:弗氏志贺氏菌引起的细菌性痢疾仍然是对人类健康的威胁。在四种入侵质粒抗原蛋白(IpaA,B,C和D)中,IpaC在该病原体的致病性中起重要作用。这项研究的目的是调查在这种疾病的致病过程中与宿主细胞中IpaC相互作用的蛋白质。方法:采用双杂交系统,构建含有ipaC基因的诱饵质粒,并将其命名为pGBKT-ipaC。将诱饵质粒转化为AH109,并证明其表达IpaC,然后将HeLa cDNA文库质粒引入上述转化的AH109中。在最初的筛选中,将转化混合物铺在缺少Trp,Leu和His的培养基上,然后在缺少Trp,Leu,His和Ade的培养基上补涂。进一步分析在选择培养基上生长的菌落的β-半乳糖苷酶活性。在对阳性文库质粒的插入cDNA进行测序后,在数据库中进行BLAST。结果:在2x10〜6个转化子中,通过His,Ade和LacZ报道基因的激活,获得了64个阳性克隆。序列分析显示,两个菌落的cDNA插入片段与已知的人类蛋白质RanBPM高度同源。结论:这些结果提供了证据,表明IpaC可能通过与RanBPM相互作用而参与了弗氏链球菌的侵袭过程,在弗氏链球菌感染的级联事件中,RanBPM最有可能成为IpaC的下游靶标。

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