首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structural and Functional Studies of trans-Encoded HLA-DQ2.3 (DQA1*03:01/DQB1*02:01) Protein Molecule
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Structural and Functional Studies of trans-Encoded HLA-DQ2.3 (DQA1*03:01/DQB1*02:01) Protein Molecule

机译:反式编码HLA-DQ2.3(DQA1 * 03:01 / DQB1 * 02:01)蛋白分子的结构和功能研究

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摘要

MHC class II molecules are composed of one α-chain and one β-chain whose membrane distal interface forms the peptide binding groove. Most of the existing knowledge on MHC class II molecules comes from the cis-encoded variants where the α- and β-chain are encoded on the same chromosome. However, trans-encoded class II MHC molecules, where the α- and β-chain are encoded on opposite chromosomes, can also be expressed. We have studied the trans-encoded class II HLA molecule DQ2.3 (DQA1*03:01/DQB1*02:01) that has received particular attention as it may explain the increased risk of certain individuals to type 1 diabetes. We report the x-ray crystal structure of this HLA molecule complexed with a gluten epitope at 3.05 Å resolution. The gluten epitope, which is the only known HLA-DQ2.3-restricted epitope, is preferentially recognized in the context of the DQ2.3 molecule by T-cell clones of a DQ8/DQ2.5 heterozygous celiac disease patient. This preferential recognition can be explained by improved HLA binding as the epitope combines the peptide-binding motif of DQ2.5 (negative charge at P4) and DQ8 (negative charge at P1). The analysis of the structure of DQ2.3 together with all other available DQ crystal structures and sequences led us to categorize DQA1 and DQB1 genes into two groups where any α-chain and β-chain belonging to the same group are expected to form a stable heterodimer.
机译:MHC II类分子由一条α链和一条β链组成,它们的膜远端界面形成肽结合槽。关于MHC II类分子的大多数现有知识都来自顺式编码的变体,其中α和β链编码在同一条染色体上。但是,也可以表达反编码的II类MHC分子,其中α链和β链编码在相反的染色体上。我们已经研究了转编码的II类HLA分子DQ2.3(DQA1 * 03:01 / DQB1 * 02:01),该分子受到了特别的关注,因为它可以解释某些人患1型糖尿病的风险增加。我们报告了与面筋抗原决定簇复合在3.05Å分辨率的这种HLA分子的X射线晶体结构。面筋表位是唯一已知的HLA-DQ2.3限制性表位,在DQ2.3分子的背景下,优先被DQ8 / DQ2.5杂合性腹腔疾病患者的T细胞克隆识别。当表位结合了DQ2.5(P4的负电荷)和DQ8(P1的负电荷)的肽结合基序时,可以通过改善HLA结合来解释这种优先识别。对DQ2.3的结构以及所有其他可用的DQ晶体结构和序列的分析导致我们将DQA1和DQB1基因分为两组,其中属于同一组的任何α链和β链均有望形成稳定的异二聚体。

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