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Crystal structure of the MHC class I homolog MIC-A, a gammadelta T cell ligand.

机译:MHC I类同源物MIC-A(γ-T细胞配体)的晶体结构。

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摘要

The major histocompatibility complex (MHC) class I homolog MIC-A functions as a stress-inducible antigen that is recognized by a subset of gammadelta T cells independent of beta2-microglobulin and bound peptides. Its crystal structure reveals a dramatically altered MHC class I fold, both in detail and overall domain organization. The only remnant of a peptide-binding groove is a small cavity formed as the result of disordering a large section of one of the groove-defining helices. Loss of beta2-microglobulin binding is due to a restructuring of the interaction interfaces. Structural mapping of sequence variation suggests potential receptor binding sites on the underside of the platform on the side opposite of the surface recognized by alphabeta T cell receptors on MHC class I-peptide complexes.
机译:主要的组织相容性复合物(MHC)I类同源物MIC-A发挥应力诱导性抗原的作用,该抗原可被不依赖β2-微球蛋白和结合肽的γ-T细胞亚群识别。它的晶体结构揭示了MHC I类折叠的显着变化,无论是细节上还是整体结构上。肽结合槽的唯一残余部分是由于使限定槽的螺旋之一的较大部分无序而形成的小腔。 β2-微球蛋白结合的丧失是由于相互作用界面的重组。序列变异的结构作图表明,在平台底面上与MHC I类肽复合物上的字母T细胞受体识别的表面相对的一侧,可能存在受体结合位点。

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