...
首页> 外文期刊>Infection and immunity >Sequence Variation and Immunologic Cross-Reactivity among Babesia bovis Merozoite Surface Antigen 1 Proteins from Vaccine Strains and Vaccine Breakthrough Isolates
【24h】

Sequence Variation and Immunologic Cross-Reactivity among Babesia bovis Merozoite Surface Antigen 1 Proteins from Vaccine Strains and Vaccine Breakthrough Isolates

机译:牛源巴氏杆菌裂殖子裂殖子表面抗原1蛋白从疫苗株和疫苗突破分离株的序列变异和免疫学交叉反应。

获取原文
           

摘要

The Babesia bovis merozoite surface antigen 1 (MSA-1) is an immunodominant membrane glycoprotein that is the target of invasion-blocking antibodies. While antigenic variation has been demonstrated in MSA-1 among strains from distinct geographical areas, the extent of sequence variation within a region where it is endemic and the effect of variation on immunologic cross-reactivity have not been assessed. In this study, sequencing of MSA-1 from two Australian B. bovis vaccine strains and 14 breakthrough isolates from vaccinated animals demonstrated low sequence identity in the extracellular region of the molecule, ranging from 19.8 to 46.7% between the T vaccine strain and eight T vaccine breakthrough isolates, and from 18.7 to 99% between the K vaccine strain and six K vaccine breakthrough isolates. Although MSA-1 amino acid sequence varied substantially among strains, overall predicted regions of hydrophilicity and hydrophobicity in the extracellular domain were conserved in all strains examined, suggesting a conserved functional role for MSA-1 despite sequence polymorphism. Importantly, the antigenic variation created by sequence differences resulted in a lack of immunologic cross-reactivity among outbreak strains using sera from animals infected with the B. bovis vaccine strains. Additionally, sera from cattle hyperinfected with the Mexico strain of B. bovis and shown to be clinically immune did not cross-react with MSA-1 from any other isolate tested. The results indicate that isolates of B. bovis capable of evading vaccine-induced immunity contain an msa-1 gene that is significantly different from the msa-1 of the vaccine strain, and that the difference can result in a complete lack of cross-reactivity between MSA-1 from vaccine and breakthrough strains in immunized animals.
机译:牛巴贝斯虫裂殖子表面抗原1(MSA-1)是一种免疫显性膜糖蛋白,是入侵阻断抗体的靶标。尽管在来自不同地理区域的菌株中已在MSA-1中证明了抗原变异,但尚未评估其流行区域内序列变异的程度以及变异对免疫交叉反应性的影响。在这项研究中,对来自两个澳大利亚 B的MSA-1进行测序。牛痘病毒疫苗株和14种来自疫苗接种动物的突破性分离株在分子的细胞外区域显示出较低的序列同一性,在T疫苗株和8种T疫苗突破性分离株之间介于19.8%至46.7%之间,而在18.7%至99%之间在K疫苗株和六个K疫苗突破分离株之间。尽管菌株之间的MSA-1氨基酸序列有很大差异,但在所有检测的菌株中,细胞外域中亲水性和疏水性的总体预测区域均保守,这表明尽管序列多态性,MSA-1仍具有保守的功能。重要的是,由序列差异产生的抗原变异导致爆发株之间缺乏使用交叉感染 B的动物血清的免疫学交叉反应。牛痘疫苗株。此外,来自墨西哥的B株过度感染牛的血清。证明具有临床免疫性的牛羊肉没有与MSA-1交叉反应。结果表明 B的分离株。能够逃避疫苗诱导的免疫力的牛牛包含一个 msa-1 基因,该基因与疫苗株的 msa-1 显着不同,并且该差异可能导致疫苗中的MSA-1与免疫动物中的突破菌株完全缺乏交叉反应性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号