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一种抗原肽与I-Ek反应中的动力学中间体。

A kinetic intermediate in the reaction of an antigenic peptide and I-Ek.

作者信息

Sadegh-Nasseri S, McConnell H M

机构信息

Stauffer Laboratory of Physical Chemistry, Department of Chemistry, Stanford University, California 94305.

出版信息

Nature. 1989 Jan 19;337(6204):274-6. doi: 10.1038/337274a0.

Abstract

Helper T cells are triggered by molecular complexes of antigenic peptides and cell surface glycoproteins of the MHC (gene products of the major histocompatibility complex) on antigen-presenting cells. There is now a lot of evidence that the complexes between isolated class II MHC molecules and selected peptides have long half-lives of approximately one day. The reported equilibrium binding constants between antigenic peptides and class II MHC molecules however, are only micromolar, suggesting that the association rate constants are very low. The only reported association rate constant is for a chicken ovalbumin peptide (OVA323-339) binding to I-Ad, and is indeed remarkably low, about 1 litre per mole per second. Prompted by these unusual data, we have used the pigeon cytochrome-c peptide pCytc(88-104) and I-E reconstituted in planar lipid bilayers on glass slides to investigate further the kinetics of peptide-MHC reactions. We report the formation of two IEk-pCytc peptide complexes. One complex has slow apparent association and dissociation kinetics, very similar to those reported previously for the chicken ovalbumin peptide and I-Ad. The second complex forms and dissociates about a hundred times more rapidly. The short-lived complex shows peptide-MHC specificity and is a kinetic intermediate in the formation of the long-lived complex; the long-lived complex is recognized by specific T-helper cells.

摘要

辅助性T细胞由抗原呈递细胞上的抗原肽与主要组织相容性复合体(MHC,主要组织相容性复合体的基因产物)的细胞表面糖蛋白的分子复合物触发。现在有大量证据表明,分离的II类MHC分子与选定肽之间的复合物具有约一天的长半衰期。然而,报道的抗原肽与II类MHC分子之间的平衡结合常数仅为微摩尔级,这表明缔合速率常数非常低。唯一报道的缔合速率常数是针对鸡卵清蛋白肽(OVA323 - 339)与I - Ad的结合,确实非常低,约为每秒每摩尔1升。受这些异常数据的启发,我们使用了在载玻片上的平面脂质双层中重构后的鸽细胞色素c肽pCytc(88 - 104)和I - E,进一步研究肽 - MHC反应的动力学。我们报道了两种IEk - pCytc肽复合物的形成。一种复合物具有缓慢的表观缔合和解离动力学,与先前报道的鸡卵清蛋白肽和I - Ad的动力学非常相似。第二种复合物的形成和解离速度快约一百倍。这种短寿命复合物显示出肽 - MHC特异性,并且是长寿命复合物形成过程中的动力学中间体;长寿命复合物可被特异性辅助性T细胞识别。

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