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Identification and Functional Analysis of the S-Layer Protein SplA of Paenibacillus larvae the Causative Agent of American Foulbrood of Honey Bees

机译:美国蜜蜂的恶臭病原体成年芽孢杆菌幼虫S层蛋白SplA的鉴定和功能分析

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摘要

The Gram-positive, spore-forming bacterium Paenibacillus larvae is the etiological agent of American Foulbrood (AFB), a globally occurring, deathly epizootic of honey bee brood. AFB outbreaks are predominantly caused by two genotypes of P. larvae, ERIC I and ERIC II, with P. larvae ERIC II being the more virulent genotype on larval level. Recently, comparative proteome analyses have revealed that P. larvae ERIC II but not ERIC I might harbour a functional S-layer protein, named SplA. We here determine the genomic sequence of splA in both genotypes and demonstrate by in vitro self-assembly studies of recombinant and purified SplA protein in combination with electron-microscopy that SplA is a true S-layer protein self-assembling into a square 2D lattice. The existence of a functional S-layer protein is novel for this bacterial species. For elucidating the biological function of P. larvae SplA, a genetic system for disruption of gene expression in this important honey bee pathogen was developed. Subsequent analyses of in vivo biological functions of SplA were based on comparing a wild-type strain of P. larvae ERIC II with the newly constructed splA-knockout mutant of this strain. Differences in cell and colony morphology suggest that SplA is a shape-determining factor. Marked differences between P. larvae ERIC II wild-type and mutant cells with regard to (i) adhesion to primary pupal midgut cells and (ii) larval mortality as measured in exposure bioassays corroborate the assumption that the S-layer of P. larvae ERIC II is an important virulence factor. Since SplA is the first functionally proven virulence factor for this species, our data extend the knowledge of the molecular differences between these two genotypes of P. larvae and contribute to explaining the observed differences in virulence. These results present an immense advancement in our understanding of P. larvae pathogenesis.
机译:革兰氏阳性,形成孢子的幼虫Paenibacillus幼虫是美国Foulbrood(AFB)的病原体,AFB是全球范围内发生的致命性流行性蜜蜂群。 AFB暴发主要是由两种基因型的疟原虫幼虫ERIC I和ERIC II引起的,其中幼虫ERIC II是幼虫水平上更具毒性的基因型。最近,比较蛋白质组学分析已经显示,幼虫假单胞菌ERIC II而非ERIC I可能带有功能性S层蛋白,即SplA。我们在此确定两种基因型中splA的基因组序列,并通过结合电子显微镜对重组和纯化SplA蛋白进行的体外自组装研究证明,SplA是自组装成方形2D晶格的真正S层蛋白。对于该细菌物种而言,功能性S层蛋白的存在是新颖的。为了阐明P.幼虫SplA的生物学功能,开发了用于破坏这种重要蜜蜂病原体中基因表达的遗传系统。随后对SplA的体内生物学功能进行分析的基础是,将P.幼虫ERIC II的野生型菌株与该菌株的新构建的splA敲除突变体进行比较。细胞和菌落形态的差异表明SplA是形状决定因素。幼虫ERIC II野生型和突变型细胞之间的显着差异,在于(i)暴露于初级p中肠细胞和(ii)暴露生物测定法中测定的幼虫死亡率,证实了幼虫ERIC S层的假设II是重要的毒力因子。由于SplA是该物种第一个在功能上得到证明的毒力因子,因此我们的数据扩展了这两个基因型幼虫假单胞菌之间分子差异的知识,并有助于解释观察到的毒力差异。这些结果代表了我们对P.幼虫发病机理的巨大理解。

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