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A Novel Family of Human Leukocyte Antigen Class II Receptors May Have Its Origin in Archaic Human Species

机译:一种新的人白细胞抗原II类受体可能在古代人类物种中具有其起源

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HLA class II α and β chains form receptors for antigen presentation to CD4+ T cells. Numerous pairings of class II α and β subunits from the wide range of haplotypes and isotypes may form, but most of these combinations, in particular those produced by isotype mixing, yielded mismatched dimers. It is unclear how selection of functional receptors is achieved. At the atomic level, it is not known which interactions of class II residues regulate selection of matched αβ heterodimers and the evolutionary origin of matched isotype mixed dimer formation. In this study we investigated assembly of isotype-mixed HLA class II α and β heterodimers. Assembly and carbohydrate maturation of various HLA-class II isotype-mixed α and β subunits was dependent on the groove binding section of the invariant chain (Ii). By mutation of polymorphic DPβ sequences, we identified two motifs, Lys-69 and GGPM-(84–87), that are engaged in Ii-dependent assembly of DPβ with DRα. We identified five members of a family of DPβ chains containing Lys-69 and GGPM 84–87, which assemble with DRα. The Lys/GGPM motif is present in the DPβ sequence of the Neanderthal genome, and this ancient sequence is related to the human allele DPB1*0401. By site-directed mutagenesis, we inspected Neanderthal amino acid residues that differ from the DPB1*0401 allele and aimed to determine whether matched heterodimers are formed by assembly of DPβ mutants with DRα. Because the *0401 allele is rare in the sub-Saharan population but frequent in the European population, it may have arisen in modern humans by admixture with Neanderthals in Europe.
机译:HLA II类α和β链形成抗原呈递给CD4 + T细胞的受体。来自各种单倍型和同种型的α和β亚基的许多配对可以形成,但大多数这些组合,特别是通过同种型混合产生的组合,得到不匹配的二聚体。目前尚不清楚如何实现功能受体选择。在原子水平下,尚不清楚II类残基的相互作用调节匹配的αβ异二聚体的选择和匹配同种型混合二聚体形成的进化起源。在该研究中,我们研究了同种型混合HLA IIα和β异二聚体的组装。各种HLA-II类同种型混合α和β亚基的组装和碳水化合物成熟依赖于不变量链(II)的沟槽结合部分。通过多态性DPβ序列的突变,我们鉴定了两个基序,Lys-69和GGPM-(84-87),其与DRα具有DPβ的II依赖性组装。我们确定了含有Lys-69和GGPM 84-87的DPβ链系的五个成员,其与DRα组装。 Lys / GGPM基序在尼安德妥肠基因组的DPβ序列中存在,这种古代序列与人类等位基因DPB1 * 0401有关。通过定点诱变,我们检查了与DPB1 * 0401等位基因不同的尼安德特氨基酸残基,并旨在确定是否通过用DRα组装DPβ突变体来形成匹配的异二聚体。因为* 0401等位基因在撒哈拉种群中很少见,但在欧洲人口频繁,它可能在现代人类中出现在欧洲尼安德特人民中的突变。

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