首页> 美国卫生研究院文献>Springer Open Choice >The peptide motif of the single dominantly expressed class I molecule of the chicken MHC can explain the response to a molecular defined vaccine of infectious bursal disease virus (IBDV)
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The peptide motif of the single dominantly expressed class I molecule of the chicken MHC can explain the response to a molecular defined vaccine of infectious bursal disease virus (IBDV)

机译:鸡MHC单一显性表达的I类分子的肽基序可以解释对传染性法氏囊病病毒(IBDV)的分子定义疫苗的反应

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摘要

In contrast to typical mammals, the chicken MHC (the BF-BL region of the B locus) has strong genetic associations with resistance and susceptibility to infectious pathogens as well as responses to vaccines. We have shown that the chicken MHC encodes a single dominantly expressed class I molecule whose peptide-binding motifs can determine resistance to viral pathogens, such as Rous sarcoma virus and Marek’s disease virus. In this report, we examine the response to a molecular defined vaccine, fp-IBD1, which consists of a fowlpox virus vector carrying the VP2 gene of infectious bursal disease virus (IBDV) fused with β-galactosidase. We vaccinated parental lines and two backcross families with fp-IBD1, challenged with the virulent IBDV strain F52/70, and measured damage to the bursa. We found that the MHC haplotype B15 from line 15I confers no protection, whereas B2 from line 61 and B12 from line C determine protection, although another locus from line 61 was also important. Using our peptide motifs, we found that many more peptides from VP2 were predicted to bind to the dominantly expressed class I molecule BF2*1201 than BF2*1501. Moreover, most of the peptides predicted to bind BF2*1201 did in fact bind, while none bound BF2*1501. Using peptide vaccination, we identified one B12 peptide that conferred protection to challenge, as assessed by bursal damage and viremia. Thus, we show the strong genetic association of the chicken MHC to a T cell vaccine can be explained by peptide presentation by the single dominantly expressed class I molecule.
机译:与典型的哺乳动物相比,MHC鸡(B基因座的BF-BL区)具有强大的遗传关联,对传染性病原体具有抗药性和敏感性以及对疫苗的反应。我们已经证明,鸡MHC编码单个显性表达的I类分子,其肽结合基序可以确定对病毒病原体(如劳斯肉瘤病毒和马立克氏病病毒)的抗性。在本报告中,我们检查了对分子定义的疫苗fp-IBD1的反应,该疫苗由携带传染性法氏囊病病毒(IBDV)VP2基因与β-半乳糖苷酶融合的禽痘病毒载体组成。我们用fp-IBD1接种了亲本和两个回交家族,用强毒的IBDV菌株F52 / 70进行了攻击,并测量了对法氏囊的损害。我们发现第15I行的MHC单倍型B15没有提供保护,而第61行的B2和第C行的B12确定了保护,尽管第61行的另一个基因座也很重要。利用我们的肽基序,我们发现,与BF2 * 1501相比,预计有更多的VP2肽与主要表达的I类分子BF2 * 1201结合。此外,大多数预测结合BF2 * 1201的肽确实结合了,而没有一个结合BF2 * 1501。使用法肽疫苗接种,我们确定了一种B12肽,通过法氏囊损害和病毒血症评估,该B12肽可赋予攻击保护作用。因此,我们显示了鸡MHC与T细胞疫苗的强遗传关联可以通过单个显性表达的I类分子的肽呈递来解释。

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