Kasson P M, Rabinowitz J D, Schmitt L, Davis M M, McConnell H M
Department of Chemistry, Stanford University, Stanford, California 94305, USA.
Biochemistry. 2000 Feb 8;39(5):1048-58. doi: 10.1021/bi9921337.
Class II MHC glycoproteins bind short (7-25 amino acid) peptides in an extended type II polyproline-like conformation and present them for immune recognition. Because empty MHC is unstable, measurement of the rate of the second-order reaction between peptide and MHC is challenging. In this report, we use dissociation of a pre-bound peptide to generate the active, peptide-receptive form of the empty class II MHC molecule I-Ek. This allows us to measure directly the rate of reaction between active, empty I-Ek and a set of peptides that vary in structure. We find that all peptides studied, despite having highly variable dissociation rates, bind with similar association rate constants. Thus, the rate-limiting step in peptide binding is minimally sensitive to peptide side-chain structure. An interesting complication to this simple model is that a single peptide can sometimes bind to I-Ek in two kinetically distinguishable conformations, with the stable peptide-MHC complex isomer forming much more slowly than the less-stable one. This demonstrates that an additional free-energy barrier limits the formation of certain specific MHC-peptide complex conformations.
II类主要组织相容性复合体(MHC)糖蛋白以延伸的II型多聚脯氨酸样构象结合短肽(7 - 25个氨基酸),并将它们呈递以供免疫识别。由于空载的MHC不稳定,测量肽与MHC之间二级反应的速率具有挑战性。在本报告中,我们利用预先结合的肽的解离来生成空载II类MHC分子I - Ek的活性、可结合肽的形式。这使我们能够直接测量活性空载I - Ek与一组结构各异的肽之间的反应速率。我们发现,尽管所有研究的肽具有高度可变的解离速率,但它们以相似的缔合速率常数结合。因此,肽结合中的限速步骤对肽侧链结构的敏感性最小。这个简单模型的一个有趣的复杂情况是,单个肽有时可以以两种动力学上可区分的构象与I - Ek结合,稳定的肽 - MHC复合物异构体形成的速度比不稳定的异构体慢得多。这表明存在一个额外的自由能屏障限制了某些特定MHC - 肽复合物构象的形成。