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Analysis of the structure of empty and peptide-loaded major histocompatibility complex molecules at the cell surface

机译:细胞表面上空的和载有肽的主要组织相容性复合物分子的结构分析

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摘要

We compared the conformation of empty and peptide-loaded class I major histocompatibility complex (MHC) molecules at the cell surface. Molecular conformations were analyzed by fluorescence resonance energy transfer (FRET) between fluorescent-labeled Fab fragments bound to the alpha 2 domain of the MHC heavy chain and fluorescent-labeled Fab fragments bound to beta 2-microglobulin. No FRET was found between Fab fragments bound to empty H-2Kb, but FRET was detected when empty H-2Kb molecules were loaded with peptide. The magnitude of FRET depended on the sequence of the peptide used. The results imply that empty H-2Kb molecules are in a relatively extended conformation, and that this conformation becomes more compact when peptide is bound. These changes, which are reflected in peptide-dependent binding of monoclonal antibodies, affect the surfaces of MHC molecules available for contact with T cell receptors and hence may influence T cell-receptor recognition of MHC molecules.
机译:我们在细胞表面比较了空的和肽加载的I类主要组织相容性复合物(MHC)分子的构象。通过荧光共振能量转移(FRET)分析与MHC重链的alpha 2结构域结合的荧光标记的Fab片段和与β2-微球蛋白结合的荧光标记的Fab片段之间的分子构象。在与空H-2Kb结合的Fab片段之间未发现FRET,但在空H-2Kb分子中加载了肽时检测到FRET。 FRET的大小取决于所用肽的序列。结果暗示空的H-2Kb分子处于相对延伸的构象,并且当结合肽时该构象变得更紧密。这些变化反映在单克隆抗体的肽依赖性结合中,影响可用于与T细胞受体接触的MHC分子的表面,因此可能影响MHC分子对T细胞受体的识别。

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