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Histo-Blood Group Antigen-Like Substances of Human Enteric Bacteria as Specific Adsorbents for Human Noroviruses

机译:人类肠道细菌的组织血类抗原样物质作为人类诺如病毒的特异性吸附剂

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摘要

Histo-blood group antigens (HBGAs) have been suggested to be receptors or coreceptors for human noroviruses (HuNoVs) expressed on the intestinal epithelium. We isolated an enteric bacterium strain (SENG-6), closely related to Enterobacter cloacae, bearing HBGA-like substances from a fecal sample of a healthy individual by using a biopanning technique with anti-HBGA antibodies. The binding capacities of four genotypes of norovirus-like particles (NoVLPs) to Enterobacter sp. SENG-6 cells were confirmed by enzyme-linked immunosorbent assay (ELISA). Transmission electron microscopy demonstrated that NoVLPs bound mainly to extracellular polymeric substances (EPS) of Enterobacter sp. SENG-6, where the HBGA-like substances were localized. EPS that contained HBGA-like substances extracted from Enterobacter sp. SENG-6 was shown by enzyme-linked immunosorbent assay (ELISA) to be capable of binding to NoVLPs of a GI.1 wild-type strain (8fIIa) and a GII.6 strain that can recognize A antigen but not to an NoVLP GI.1 mutant strain (W375A) that loses the ability to bind to A antigen. Enzymatic cleavage of terminal N-acetyl-galactosamine residues in the bacterial EPS weakened bacterial EPS binding to the GI.1 wild-type strain (8fIIa). These results indicate that A-like substances in the bacterial EPS play a key role in binding to NoVLPs. Since the specific binding of HuNoVs to HBGA-positive enteric bacteria is likely to affect the transmission and infection processes of HuNoVs in their hosts and in the environment, further studies of human enteric bacteria and their binding capacity to HuNoVs will provide a new scientific platform for understanding interactions between two types of microbes that were previously regarded as biologically unrelated.
机译:有人提出组织血型抗原(HBGA)是在肠上皮表达的人类诺如病毒(HuNoV)的受体或共受体。我们通过使用抗HBGA抗体的生物淘选技术从健康个体的粪便样本中分离出一种与阴沟肠杆菌密切相关的肠道细菌菌株(SENG-6),该菌株带有HBGA样物质。诺如病毒样颗粒(NoVLP)的四种基因型与肠杆菌的结合能力。 SENG-6细胞通过酶联免疫吸附测定(ELISA)确认。透射电子显微镜显示,NoVLPs主要与肠杆菌属的胞外聚合物(EPS)结合。 SENG-6,类似HBGA的物质位于其中。包含从肠杆菌属中提取的HBGA样物质的EPS。酶联免疫吸附测定(ELISA)显示SENG-6能够与GI.1野生型菌株(8fIIa)和可以识别A抗原但不识别NoVLP GI的GII.6菌株的NoVLP结合.1突变菌株(W375A),失去与A抗原结合的能力。细菌EPS中末端N-乙酰基-半乳糖胺残基的酶切作用减弱了细菌EPS与GI.1野生型菌株(8fIIa)的结合。这些结果表明细菌EPS中的A样物质在结合NoVLP中起关键作用。由于HuNoV与HBGA阳性肠道细菌的特异性结合可能会影响HuNoV在其宿主和环境中的传播和感染过程,因此进一步研究人类肠道细菌及其与HuNoV的结合能力将提供一个新的科学平台了解以前被认为与生物学无关的两种微生物之间的相互作用。

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