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首页> 外文期刊>Applied Microbiology >Mapping the Neutralizing Epitopes of Enterotoxigenic Escherichia coli K88 (F4) Fimbrial Adhesin and Major Subunit FaeG
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Mapping the Neutralizing Epitopes of Enterotoxigenic Escherichia coli K88 (F4) Fimbrial Adhesin and Major Subunit FaeG

机译:绘制产肠毒素大肠杆菌K88(F4)纤维粘附素和主要亚基FaeG的中和表位图

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摘要

Enterotoxigenic Escherichia coli (ETEC) strains that produce immunologically heterogeneous fimbriae and enterotoxins are the primary cause of neonatal diarrhea and postweaning diarrhea in young pigs. A multivalent vaccine inducing protective immunity against ideally all ETEC fimbriae and enterotoxins could be effective against diarrhea in young pigs. However, developing a vaccine to broadly protect against various ETEC virulence determinants has proven challenging. Recently developed structure- and epitope-based multiepitope fusion antigen (MEFA) technology that presents neutralizing epitopes of various virulence determinants at a backbone immunogen and that mimics epitope native immunogenicity suggests the feasibility of developing multivalent vaccines. With neutralizing epitopes from ETEC fimbria F18 and enterotoxins being identified, it becomes urgent to identify protective epitopes of K88 (F4) fimbriae, which play a major role in pig neonatal and postweaning diarrhea. In this study, we identified B-cell immunodominant epitopes in silico from the K88ac fimbrial major subunit (also adhesin) FaeG and embedded each epitope in a heterogeneous carrier for epitope fusions. We then immunized mice with each epitope fusion protein and examined epitope antigenicity and also neutralizing activities of epitope-induced antibodies. Data showed that while all nine FaeG epitope fusions induced antibodies to K88ac fimbria, anti-K88 IgG antibodies derived from epitopes MTGDFNGSVD (ep1), LNDLTNGGTK (ep2), GRTKEAFATP (ep3), ELRKPDGGTN (ep4), PMKNAGGTKVGAVKVN (ep5), and RENMEYTDGT (ep8) significantly inhibited adherence of K88ac fimbrial bacteria to porcine intestinal cell line IPEC-J2, indicating that these peptides were the neutralizing epitopes of K88ac fimbrial major subunit FaeG and suggesting the future application of FaeG epitopes in ETEC vaccine development.IMPORTANCE Enterotoxigenic Escherichia coli (ETEC) strains producing K88ac fimbriae and enterotoxins are a major cause of porcine neonatal diarrhea and postweaning diarrhea in the United States. Currently, there is no vaccine to induce broadly protective antiadhesin and antitoxin immunity against ETEC-associated diarrhea. To develop a broadly effective ETEC vaccine, we need to target the most important if not all ETEC virulence determinants. While conventional vaccinology approaches encounter difficulties at integrating or including heterogeneous ETEC fimbria and toxin antigens into a vaccine product, multiepitope fusion antigen (MEFA) structural vaccinology provides a new platform to combine neutralizing antigenic elements or epitopes from various heterogeneous virulence factors for broad immunity and protection. Identification of the neutralizing epitopes of K88ac fimbria from this study added the last antigens to an MEFA-based multivalent vaccine against ETEC-associated diarrhea in pigs. An effective vaccine against pig diarrhea can significantly improve swine health and well-being and reduce economic losses to the swine industry worldwide.
机译:产生免疫异质性菌毛和肠毒素的肠毒素性大肠杆菌(ETEC)菌株是幼猪新生儿腹泻和断奶后腹泻的主要原因。诱导针对理想的所有ETEC菌毛和肠毒素的保护性免疫的多价疫苗可有效预防幼猪的腹泻。然而,事实证明,开发一种可广泛抵抗各种ETEC毒力决定因素的疫苗具有挑战性。最近开发的基于结构和表位的多表位融合抗原(MEFA)技术可在主链免疫原上呈递多种毒力决定簇的中和表位,并模仿表位的天然免疫原性,表明开发多价疫苗的可行性。随着ETEC菌毛F18的中和表位和肠毒素的鉴定,迫切需要鉴定出K88(F4)菌毛的保护性表位,该表位在猪的新生儿和断奶后的腹泻中起着重要的作用。在这项研究中,我们从K88ac纤维主要亚基FaeG的计算机中鉴定了B细胞免疫优势抗原决定簇,并将每个抗原决定簇嵌入异源载体中进行抗原决定簇融合。然后,我们用每种抗原决定簇融合蛋白免疫小鼠,检查抗原决定簇的抗原性以及抗原决定簇诱导的抗体的中和活性。数据显示,尽管所有9种FaeG表位融合物均诱导针对K88ac菌毛的抗体,但衍生自表位MTGDFNGSVD(ep1),LNDLTNGGTK(ep2),GRTKEAFATP(ep3),ELRKPDGGTN(ep4),PMKNAGGTKVGAVKVN(ep5)和RENMEY的抗K88 IgG抗体(ep8)显着抑制K88ac纤维细菌对猪肠道细胞IPEC-J2的粘附,表明这些肽是K88ac纤维主要亚基FaeG的中和表位,并暗示FaeG表位在ETEC疫苗开发中的未来应用。 (ETEC)产生K88ac菌毛和肠毒素的菌株在美国是猪新生儿腹泻和断奶后腹泻的主要原因。当前,没有疫苗可诱导针对ETEC相关性腹泻的广泛保护性抗粘附素和抗毒素免疫。要开发广泛有效的ETEC疫苗,我们需要针对最重要的ETEC毒力决定因素(如果不是全部)。尽管常规疫苗学方法在将异种ETEC菌毛和毒素抗原整合或包括到疫苗产品中时遇到困难,但多表位融合抗原(MEFA)结构疫苗学提供了一个新平台,可将来自各种异源毒力因子的中和性抗原元件或表位结合起来,以实现广泛的免疫力和保护。从这项研究中鉴定出K88ac菌毛的中和表位,将最后的抗原添加到了基于MEFA的针对ETEC相关性腹泻的猪多价疫苗中。有效的猪腹泻疫苗可以显着改善猪的健康和福祉,并减少全球养猪业的经济损失。

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