Wu S, Gorski J
Immunogenetics Research, Blood Research Institute, Blood Center of Southeastern Wisconsin, Milwaukee 53233, USA.
Int Immunol. 1997 Oct;9(10):1495-502. doi: 10.1093/intimm/9.10.1495.
The first hydrophobic pocket, P1, of class II MHC has been shown to be an important site of peptide anchoring. Two polymorphisms occur in this pocket in the human class II MHC beta chain at position 85 and 86. beta 85 is usually Val, occasionally Ala, whereas beta 86 can be Gly or Val. However, Ala85 is found only in conjunction with Val86. The independent effect of the polymorphism at these two positions on the binding of normal and substituted antigenic peptides has never been examined. To do so, three soluble HLA-DR1 variants that contain the naturally occurring combinations of these side chains at these two positions were generated and tested with a panel of influenza matrix peptides varying at anchor P1. DR1 alleles differing only at position 86 are very similar in the binding of a panel of antigenic peptide, indicating that beta 86 does not substantially influence the peptide binding of DR1. In contrast, DR1 varying only at position beta 85 differ in their binding of substituted peptides containing Ala, Tyr or Trp at the P1 anchor position. Thus, beta 85 shows the predominant effect on the P1 anchor side chain preference of the P1 pocket in DR1. This is in contrast to other HLA-DR alleles where beta 86 has been shown to control the nature of the P1 anchor. These previous data together with our own imply that the role of polymorphism in P1 may be influenced by the contextual framework of the remaining allelic polymorphism.
II类主要组织相容性复合体(MHC)的第一个疏水口袋P1已被证明是肽锚定的重要位点。在人类II类MHCβ链的第85和86位,这个口袋中出现了两种多态性。β85通常是缬氨酸(Val),偶尔是丙氨酸(Ala),而β86可以是甘氨酸(Gly)或缬氨酸。然而,丙氨酸85仅与缬氨酸86同时出现。这两个位置的多态性对正常和取代抗原肽结合的独立影响从未被研究过。为此,生成了三种可溶性HLA - DR1变体,它们在这两个位置包含这些侧链的天然组合,并使用一组在锚定P1处不同的流感基质肽进行测试。仅在第86位不同的DR1等位基因在一组抗原肽的结合上非常相似,这表明β86对DR1的肽结合没有实质性影响。相比之下,仅在β85位不同的DR1在其对P1锚定位置含有丙氨酸、酪氨酸或色氨酸的取代肽的结合上存在差异。因此,β85对DR1中P1口袋的P1锚定侧链偏好显示出主要影响。这与其他HLA - DR等位基因形成对比,在其他等位基因中,β86已被证明控制P1锚定的性质。这些先前的数据以及我们自己的数据表明,P1中多态性的作用可能受到其余等位基因多态性的背景框架的影响。