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首页> 外文期刊>Nucleic Acids Research >The evolutionary dynamics of variant antigen genes in Babesia reveal a history of genomic innovation underlying host-parasite interaction
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The evolutionary dynamics of variant antigen genes in Babesia reveal a history of genomic innovation underlying host-parasite interaction

机译:Babesia变异抗原基因的进化动态揭示了基因组创新史基潜水腺寄生虫相互作用的历史

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摘要

Babesia spp. are tick-borne, intraerythrocytic hemoparasites that use antigenic variation to resist host immunity, through sequential modification of the parasite-derived variant erythrocyte surface antigen (VESA) expressed on the infected red blood cell surface. We identified the genomic processes driving antigenic diversity in genes encoding VESA (ves1) through comparative analysis within and between three Babesia species, (B. bigemina, B. divergens and B. bovis). Ves1 structure diverges rapidly after speciation, notably through the evolution of shortened forms (ves2) from 5' ends of canonical ves1 genes. Phylogenetic analyses show that ves1 genes are transposed between loci routinely, whereas ves2 genes are not. Similarly, analysis of sequence mosaicism shows that recombination drives variation in ves1 sequences, but less so for ves2, indicating the adoption of different mechanisms for variation of the two families. Proteomic analysis of the B. bigemina PR isolate shows that two dominant VESA1 proteins are expressed in the population, whereas numerous VESA2 proteins are co-expressed, consistent with differential transcriptional regulation of each family. Hence, VESA2 proteins are abundant and previously unrecognized elements of Babesia biology, with evolutionary dynamics consistently different to those of VESA1, suggesting that their functions are distinct
机译:巴贝斯虫属。是蜱传,使用抗原变异以抵抗宿主免疫,通过被感染的红细胞表面上表达的寄生虫衍生的变体的红细胞表面抗原(VESA)的顺序变形红细胞内hemoparasites。我们确定的基因组的过程驱动的抗原多样性在通过内和三个巴贝斯物种之间的比较分析,(B. bigemina,B. divergens和牛巴贝虫)编码VESA(ves1)基因。 Ves1结构发散形态后迅速,特别是通过从5' 的规范ves1基因末端缩短形式(ves2)的演变。系统发育分析表明,ves1基因位点之间定期调换,而ves2基因不是。同样,镶嵌序列分析显示,在ves1序列重组驱动器的变化,但不适合ves2,说明采用了两个家庭的变化不同的机制。的B. bigemina PR分离显示蛋白质组学分析这两个主要VESA1蛋白质在人群中表达,而众多VESA2蛋白质共表达,与每个家庭的差别转录调控是一致的。因此,VESA2蛋白是生物学巴贝斯虫的丰富和以前未识别的元素,具有进化动力学的那些VESA1一贯不同,这表明它们的功能是不同的

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  • 来源
    《Nucleic Acids Research》 |2014年第11期|共19页
  • 作者单位

    Department of Infection Biology Institute of Infection and Global Health University of Liverpool Liverpool Science Park Ic2 146 Brownlow Hill Liverpool L3 5RF UK;

    Pathogen Genomics Group Wellcome Trust Sanger Institute Wellcome Trust Genome Campus Hinxton Cambridge CB10 1SA UK;

    Department of Functional and Comparative Genomics Institute of Integrative Biology University of Liverpool Crown Street Liverpool L69 7ZB UK;

    Computational Bioscience Research Center King Abdullah University of Science and Technology Thuwal 23955-6900 Saudi Arabia;

    Department of Infection Biology Institute of Infection and Global Health University of Liverpool Liverpool Science Park Ic2 146 Brownlow Hill Liverpool L3 5RF UK;

    Laboratorio de Inmunología y EEA-INTA CC 22 2300 Rafaela Santa Fe Argentina;

    Centro Nacional de Investigaciones Agropecuarias Instituto de Biotecnología INTA Buenos Aires Argentina;

    Bioinformatics Laboratory Structural and Computational Biology Group International Centre for Genetic Engineering and Biotechnology Aruna Asaf Ali Marg New Delhi 110 067 India;

    Pathogen Genomics Group Wellcome Trust Sanger Institute Wellcome Trust Genome Campus Hinxton Cambridge CB10 1SA UK;

    Bioinformatics Laboratory Structural and Computational Biology Group International Centre for Genetic Engineering and Biotechnology Aruna Asaf Ali Marg New Delhi 110 067 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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