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肽与纯化的抗体结合的H-2Db和H-2Dbβ2m复合物结合的动力学

Dynamics of peptide binding to purified antibody-bound H-2Db and H-2Db beta 2m complexes.

作者信息

Burshtyn D N, Barber B H

机构信息

Department of Immunology, University of Toronto, Canada.

出版信息

J Immunol. 1993 Sep 15;151(6):3082-93.

PMID:7690793
Abstract

Although it is clear that each component of the class I MHC trimolecular complex (heavy chain, beta 2m, and antigenic peptide) contributes to its formation and stability, the specific interaction governing assembly and disassembly remain to be clarified. In an effort to address these issues using purified H-2Db molecules, we used a solid-phase binding assay recently developed in our laboratory to quantify kinetic parameters for class I assembly and disassembly. It was found that the influenza NP peptide Y367-374 associated with preformed empty complexes of 28-14-8S- (i.e., anti-alpha 3) bound Db beta 2m dimers much more quickly (t 1/2 < 0.2 h at 22 degrees C) than it did when coincubated with an anti-alpha 3 bound Db and human beta 2m (t1/2 3.5 h at 22 degrees C). The previously reported potential for the NP peptide Y367-374 to interact directly with free Db heavy chains and configure the conventionally beta 2m-dependent B22 epitope in the absence of beta 2m, was confirmed using our assay system. However, the rate of B22 epitope formation induced in the Db heavy chain by NP Y367-374 was considerably slower (t1/2 13 h, at 22 degrees C) and much less efficient on a molar basis than that resulting from the addition of beta2m (t1/2, 0.75 h, at 22 degrees C). In contrast, the Db heavy chain with NP-Y367-374 was more resistant to thermal disassembly (as measured by loss of the B22 epitope, t1/2 2h, 37 degrees C) than the Db beta 2m empty dimer (t1/2 0.2 h). Finally, stability of the preformed trimolecular complex of heavy chain, beta 2m, and peptide was found to diminish in accordance with deviation of the peptide from the optimal length and with increasing temperature from 4 to 37 degrees C.

摘要

虽然很明显,I类MHC三分子复合物的每个组分(重链、β2m和抗原肽)都对其形成和稳定性有贡献,但控制组装和解聚的具体相互作用仍有待阐明。为了使用纯化的H-2Db分子解决这些问题,我们使用了最近在我们实验室开发的固相结合测定法来量化I类组装和解聚的动力学参数。发现流感NP肽Y367-374与预先形成的28-14-8S-(即抗α3)结合的Dbβ2m二聚体的空复合物结合得更快(在22℃下t1/2<0.2小时),比与抗α3结合的Db和人β2m共孵育时更快(在22℃下t1/2为3.5小时)。使用我们的测定系统证实了先前报道的NP肽Y367-374在没有β2m的情况下直接与游离Db重链相互作用并构建传统上依赖β2m的B22表位的可能性。然而,NP Y367-374在Db重链中诱导的B22表位形成速率相当慢(在22℃下t1/2为13小时),并且在摩尔基础上比添加β2m产生的效率低得多(在22℃下t1/2为0.75小时)。相反,带有NP-Y367-374的Db重链比Dbβ2m空二聚体更耐热解聚(通过B22表位的丧失测量,在37℃下t1/2为2小时)(在t1/2为0.2小时)。最后,发现重链、β2m和肽的预先形成的三分子复合物的稳定性随着肽偏离最佳长度以及温度从4℃升高到37℃而降低。

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