首页> 外文OA文献 >Changes at peptide residues buried in the major histocompatibility complex (MHC) class I binding cleft influence T cell recognition: a possible role for indirect conformational alterations in the MHC class I or bound peptide in determining T cell recognition
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Changes at peptide residues buried in the major histocompatibility complex (MHC) class I binding cleft influence T cell recognition: a possible role for indirect conformational alterations in the MHC class I or bound peptide in determining T cell recognition

机译:埋在主要组织相容性复合物(MHC)I类结合裂隙中的肽残基的变化会影响T细胞识别:I类MHC或结合肽的间接构象改变在确定T细胞识别中的可能作用

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摘要

Recent crystallographic studies on two peptide complexes with the mouse Kb molecule have shown that peptide binding appears to alter the conformation of the class I alpha-helical regions that flank the antigen binding cleft. Given that this study also showed that much of the foreign peptide is buried within the class I binding cleft with only a small portion accessible for direct interaction with the components of the T cell receptor, this finding suggests that at least some component of T cell specificity may arise as a consequence of peptide-induced conformational changes in the class I structure. To assess this possibility, we have made systematic substitutions at residues within the Kb-restricted determinant from ovalbumin (OVA257- 264) that are thought to be buried on binding to the class I molecule. We have found that changes in this determinant at the completely buried second residue (P2) can influence T cell recognition without affecting binding to Kb, suggesting that the substitutions may indirectly determine T cell recognition by altering the conformation of the class I molecule or the bound peptide.
机译:最近对具有小鼠Kb分子的两种肽复合物的晶体学研究表明,肽结合似乎改变了抗原结合裂口侧翼的I类α-螺旋区域的构象。鉴于这项研究还表明,许多外源肽被埋在I类结合裂隙中,只有一小部分可与T细胞受体的成分直接相互作用,因此这一发现表明,至少有一部分T细胞特异性可能是由于肽诱导的I类结构构象变化而引起的。为了评估这种可能性,我们在卵白蛋白(OVA257-264)的Kb限制性决定簇内的残基上进行了系统取代,这些残基被认为与I类分子结合后被掩埋。我们发现在完全掩埋的第二个残基(P2)处该决定簇的变化可以影响T细胞识别,而不会影响与Kb的结合,这表明取代可能通过改变I类分子的构象或结合而间接确定T细胞识别。肽。

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