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Identification of Lawsonia intracellularis putative hemolysin protein A and characterization of its immunoreactivity

机译:施用牵引升定血细胞素蛋白A的鉴定及其免疫反应性的表征

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Highlights ? Antigenic features of Lawsonia hemolysin A (LhlyA) protein were characterized. ? Putative epitope sites of the protein was identified by using bioinformatics analysis. ? Presence of predicted epitopes on the LhlyA protein was validated by immunoblotting with sera raised against L. intracellularis. ? LhlyA protein showed a potential as a highly immunoreactive antigen of L. intracellularis. Despite the recent global increase in fatal endemic outbreaks of proliferative enteropathy (PE) caused by the obligate intracellular bacterium Lawsonia intracelluralis (LI) in the swine industry, development of effective prevention strategies or immunodiagnostic tests has been delayed due to the difficulty of cultivating this pathogen in vitro. Although several genetic analyses have been performed at the level of gene transcription after the complete genome sequence of LI was made available, the mechanism of LI infection and virulence genes remain unidentified. In the present study, we assessed the antigenic features of the LI0004 protein, which we putatively defined as Lawsonia hemolysin A (LhlyA), by employing bioinformatics tools and in vivo and in vitro protein-based molecular assays. The amino acid sequence of LhlyA showed approximately 60% homology to the hemolysin-like proteins of Bilophila wadsworthia and Desulfovibrio piger. Presence of computationally predicted linear antigenic B-cell epitopes on the LhlyA protein was demonstrated by immunoblotting; a band with a molecular mass corresponding to the predicted size of the protein was strongly recognized by sera collected from artificially infected mice. Further, in an in vivo cytotoxicity assay, no splenomegaly was observed in mice inoculated with purified LhlyA. Collectively, the data presented here suggest that the LhlyA protein is a highly immuno-reactive antigen of L. intracellullaris and can potentially be used to develop effective protection strategies against PE.
机译:强调 ?表征了rawonia血溶酪素A(lhlya)蛋白的抗原特征。还通过使用生物信息学分析来鉴定蛋白质的推定表位位点。还通过用针对L.细胞内饲养的血清免疫印迹验证了LHLYA蛋白上的预测表位。还LHLYA蛋白显示出作为L.细胞内的高度免疫反应性抗原的潜力。尽管最近的致命肠病(PE)致命流肠病(PE)造成的致命流肠病(PE)引起的猪细胞内阵挛性(LI)在猪工业中造成的,但由于培养该病原体的难度而导致有效预防策略或免疫诊断测试的发展已经推迟体外。尽管在李的完整基因组序列获得后,在基因转录的水平上进行了几种遗传分析,但Li感染和毒力基因的机制仍然不明。在本研究中,我们评估了Li0004蛋白的抗原特征,我们通过使用生物信息学工具和体内和体外蛋白质的分子测定来定义为LawoSia血瓶A(Lhlya)。 Lhlya的氨基酸序列显示于Bilophila Wastsworthia和Desurovibrie Roger的血溶酪素样蛋白的同源性约60%。通过免疫印迹证明了Lhlya蛋白上的计算预测的直线抗原B细胞表位;通过从人工感染的小鼠收集的血清强烈地识别具有对应于蛋白质的预测尺寸的分子量的带。此外,在体内细胞毒性测定中,在接种纯化的Lhlya的小鼠中观察到脾肿大。本文呈现的数据表明,LHLYA蛋白是L.骨髓碱的高度免疫反应性抗原,并且可能用于开发对PE的有效保护策略。

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