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首页> 外文期刊>Infection and immunity >Molecular Basis for Antigenic Variation of a Protective Strain-Specific Antigen of Ehrlichia risticii
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Molecular Basis for Antigenic Variation of a Protective Strain-Specific Antigen of Ehrlichia risticii

机译:埃里希氏菌保护性菌株特异性抗原抗原变异的分子基础

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Ehrlichia risticii, the causative agent of Potomac horse fever, has recently been isolated from many vaccinated horses with typical clinical signs of the disease. The heterogeneity of theE. risticii isolates obtained from the vaccinated horses necessitates the identification of the molecular basis of strain variations to elucidate the vaccine failure and to aid in the development of an efficient vaccine against this disease. As an attempt, two major cross-reacting surface antigen genes of 50- and 85-kDa antigens, present separately in strains 25-D (isolated in 1984) and 90-12 (isolated in 1990 from a vaccinated horse), respectively, were cloned and sequenced. A comparative sequence analysis revealed differences and similarities between these two antigens with strain-specific sizes (SSA). The 2.5- and 1.6-kb genes coding for the 85- and 50-kDa proteins, respectively, contained many different tandem repeats. The identical repeat motifs were more frequent in the middle of both genes, but the numbers and positions of the repeats were altogether different in the genes. Many of these direct repeats of both genes had exact sequence homology and coded for the same amino acids. The homology of the 5′- and 3′-flanking regions of the two genes was greater than that of the regions in the central part of the genes. A comparative analysis of the deduced amino acid sequences of these two antigen genes indicated eight common domains, which were designated identical domains. Although the sequence homologies of these identical domains were the same, the positions of the domains in their respective strains were completely different. This finding might be one of the bases of antigenic variation between the strains. In addition, there were a few unique regions in both antigen genes where no sequence homology existed. These specific regions were designated unique domains. The 50-kDa protein had two such unique domains, and the 85-kDa protein had six such unique domains. The presence of such unique domains contributed to the large size variation of these SSA. The cross-reactivity of recombinant proteins confirmed the presence of conserved epitopes between these two antigens. The SSA have been determined to be apparent protective antigens of E. risticii.
机译:最近,从许多具有典型疾病临床症状的疫苗接种马匹中分离出了波托马克马热的致病病原体 Ehrlichia risticii 。 E的异质性。从接种过的马匹中分离出的risticii 菌株需要鉴定菌株变异的分子基础,以阐明疫苗的失败并帮助开发针对这种疾病的有效疫苗。作为尝试,分别存在于菌株25-D(1984年分离)和菌株90-12(1990年从接种马匹分离)中分别存在的两个50-kDa和85-kDa抗原的主要交叉反应表面抗原基因。克隆并测序。比较序列分析显示这两种抗原具有菌株特异性大小(SSA)的差异和相似性。分别编码85-kDa和50-kDa蛋白的2.5-kb和1.6-kb基因含有许多不同的串联重复序列。相同的重复基序在两个基因的中间频率更高,但是重复的数量和位置在基因中完全不同。这两个基因的许多直接重复都具有精确的序列同源性,并编码相同的氨基酸。两个基因的5'-和3'-侧翼区的同源性大于基因中心部分的同源性。对这两个抗原基因的推导氨基酸序列的比较分析表明八个共同结构域,被称为相同结构域。尽管这些相同结构域的序列同源性相同,但是它们各自菌株中结构域的位置完全不同。这一发现可能是菌株之间抗原变异的基础之一。另外,两个抗原基因中都有一些独特的区域,其中不存在序列同源性。这些特定区域被指定为唯一域。 50-kDa蛋白具有两个这样的独特结构域,而85-kDa蛋白具有六个这样的独特结构域。此类独特域的存在导致了这些SSA的大尺寸变化。重组蛋白的交叉反应性证实了这两种抗原之间存在保守的表位。已经确定SSA是 E的明显保护性抗原。 risticii

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