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催化肽从II类主要组织相容性复合体-肽复合物中解离。

Catalysis of peptide dissociation from class II MHC-peptide complexes.

作者信息

Schmitt L, Kratz J R, Davis M M, McConnell H M

机构信息

Department of Chemistry, Stanford University, Stanford, CA 94305, USA.

出版信息

Proc Natl Acad Sci U S A. 1999 Jun 8;96(12):6581-6. doi: 10.1073/pnas.96.12.6581.

Abstract

Certain peptides such as dynorphin A [dynA-(1-13)] enhance the release of antigenic peptides bound to class II MHC molecules at neutral pH. This enhanced release has been termed push off. Previous work has shown that the antigenic pigeon cytochrome c peptide PCC-(89-104) has at least two conformational isomers when bound to the class II MHC protein I-Ek. We have accordingly studied the push off of PCC-(89-104) from the complex PCC-(89-104)/I-Ek to see whether these isomeric conformations are distinguished by the push-off effect. A comparison of the association and dissociation kinetics of PCC-(89-104)/I-Ek in the presence of dynA-(1-13) shows that dynA-(1-13) does not simply replace PCC-(89-104) but rather acts catalytically. The major product is peptide-free I-Ek, which is receptive to further peptide binding. Evidence is presented that a two peptide-one MHC complex is formed in solution. This ternary complex represents the first step of the mechanism of push off. 19F NMR data are presented that indicate that dynA-(1-13) interacts specifically with only one of the two isomeric complexes of PCC-(89-104) and I-Ek. A push-off mechanism is proposed in which dynA-(1-13) binds outside the peptide binding groove. In a second step, the dissociation of one of the two isomers is specifically enhanced. Thus the push-off effect may be useful for identifying conformational isomers and for separating them.

摘要

某些肽,如强啡肽A [强啡肽A-(1-13)],在中性pH值下可增强与II类主要组织相容性复合体(MHC)分子结合的抗原肽的释放。这种增强的释放被称为“推开”。先前的研究表明,抗原性鸽细胞色素c肽PCC-(89-104)与II类MHC蛋白I-Ek结合时至少有两种构象异构体。因此,我们研究了PCC-(89-104)从复合物PCC-(89-104)/I-Ek中的“推开”情况,以确定这些异构体构象是否能通过“推开”效应来区分。对PCC-(89-104)/I-Ek在强啡肽A-(1-13)存在下的缔合和解离动力学进行比较,结果表明强啡肽A-(1-13)并非简单地取代PCC-(89-104),而是起催化作用。主要产物是无肽的I-Ek,它易于进一步结合肽。有证据表明溶液中形成了一种双肽-单MHC复合物。这种三元复合物代表了“推开”机制的第一步。给出的19F核磁共振数据表明,强啡肽A-(1-13)仅与PCC-(89-104)和I-Ek的两种异构体复合物中的一种特异性相互作用。提出了一种“推开”机制,其中强啡肽A-(1-13)在肽结合槽外结合。在第二步中,两种异构体之一的解离被特异性增强。因此,“推开”效应可能有助于识别构象异构体并将它们分离。

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