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Cloning and Characterization of the Gene Encoding the Glutamate Dehydrogenase of Streptococcus suis Serotype 2

机译:猪链球菌血清型2谷氨酸脱氢酶编码基因的克隆与鉴定

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摘要

Given the lack of effective vaccines to control Streptococcus suis infection and the lack of a rapid and reliable molecular diagnostic assay to detect its infection, a polyclonal antibody was raised against the whole-cell protein of S. suis type 2 and used to screen an S. suis gene library in an effort to identify protective antigen(s) and antigens of diagnostic importance. A clone that produced a 45-kDa S. suis-specific protein was identified by Western blotting. Restriction analysis showed that the gene encoding the 45-kDa protein was present on a 1.6-kb pair DraI region on the cloned chromosomal fragment. The nucleotide sequence contained an open reading frame that encoded a polypeptide of 448 amino acid residues with a calculated molecular mass of 48.8 kDa, in close agreement with the size observed on Western blots. A GenBank database search revealed that the derived amino acid sequence is homologous to the sequence of glutamate dehydrogenase (GDH) protein isolated from various sources, including conserved motifs and functional domains typical of the family 1-type hexameric GDH proteins, thus placing it in that family. Because of these similarities, the protein was designated the GDH of S. suis. Hybridization studies showed that the gene is conserved among the S. suis type 2 strains tested. Antiserum raised against the purified recombinant protein was reactive with a protein of the same molecular size as the recombinant protein in S. suis strains, suggesting expression of the gene in all of the isolates and antigenic conservation of the protein. The recombinant protein was reactive with serum from pigs experimentally infected with a virulent strain of S. suis type 2, suggesting that the protein might serve as an antigen of diagnostic importance to detect S. suis infection. Activity staining showed that the S. suis GDH activity is NAD(P)H dependent but, unlike the NAD(P)H-dependent GDH from various other sources, that of S. suis utilizes l-glutamate rather than α-ketoglutarate as the substrate. Highly virulent strains of S. suis type 2 could be distinguished from moderately virulent and avirulent strains on the basis of their GDH protein profile following activity staining on a nondenaturing gel. We examined the cellular location of the protein using a whole-cell enzyme-linked immunosorbent assay and an immunogold-labeling technique. Results showed that the S. suis GDH protein is exposed at the surface of intact cells.
机译:由于缺乏控制猪链球菌感染的有效疫苗并且缺乏检测其感染的快速可靠的分子诊断方法,因此针对猪链球菌2型全细胞蛋白的多克隆抗体被提出,并用于筛选猪链球菌suis基因文库,旨在鉴定保护性抗原和具有诊断意义的抗原。通过Western印迹鉴定出产生45kDa猪链球菌特异性蛋白的克隆。限制性酶切分析表明,编码45kDa蛋白的基因存在于克隆的染色体片段的1.6kb对DraI区域上。核苷酸序列包含一个开放阅读框,该阅读框编码448个氨基酸残基的多肽,计算分子量为48.8 kDa,与Western blot观察到的大小非常吻合。 GenBank数据库搜索显示,衍生的氨基酸序列与从各种来源分离的谷氨酸脱氢酶(GDH)蛋白的序列同源,包括保守的基序和家族1型六聚体GDH蛋白的典型功能域,因此将其置于家庭。由于这些相似性,该蛋白质被命名为猪链球菌的GDH。杂交研究表明,该基因在测试的猪链球菌2型菌株中是保守的。针对纯化的重组蛋白产生的抗血清可与与猪链球菌菌株中的重组蛋白具有相同分子大小的蛋白发生反应,这表明该基因在所有分离物中均表达,并具有抗原保守性。重组蛋白可与实验性感染2型猪链球菌强毒株的猪的血清反应,这表明该蛋白可能是检测猪链球菌感染具有重要诊断意义的抗原。活性染色表明,猪链球菌的GDH活性是NAD(P)H依赖性的,但不同于来自其他各种来源的NAD(P)H依赖性GDH,猪链球菌的活性是使用L-谷氨酸而不是α-酮戊二酸。基质。在非变性凝胶上进行活性染色后,根据其GDH蛋白谱,可以将2型猪链球菌的高毒力菌株与中毒和无毒力的菌株区分开。我们使用全细胞酶联免疫吸附测定和免疫金标记技术检查了蛋白质的细胞位置。结果表明,猪链球菌GDH蛋白暴露于完整细胞的表面。

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