Sette A, Southwood S, O'Sullivan D, Gaeta F C, Sidney J, Grey H M
Cytel, San Diego, CA 92121.
J Immunol. 1992 Feb 1;148(3):844-51.
The effect of pH on class II-peptide interactions has been analyzed using several mouse (IAd, IAk, IEd, IEk) and human (DR1, DR5, DR7) MHC specificities, and eight different class II-restricted determinants. In direct binding assays, acidic conditions led to increased binding capacity for many class II-peptide combinations. IE molecules seemed to bind optimally around pH 4.5, whereas IA molecules displayed binding optima in the 5.5 to 6.5 range. In contrast, the DR molecules studied were, in most cases, affected only marginally by pH changes in the 4.5 to 7.0 range. Despite these apparent isotype-specific trends, no general rule could be formulated, because even for the same class II molecules, the binding capacity could be increased for many peptides when the binding was performed under acidic conditions, was unaffected for some, and even decreased for others. The mechanisms responsible for this complex behavior were analyzed in more detail by kinetic and equilibrium analysis of three different class II-peptide combinations (IAd/OVA 323-339, IAk/HEL 46-61, and DR1/HA 307-319). It was found that acidic pH conditions could affect both on and off rates for class II-peptide complexes. Depending on the net balance of these effects, either increases, decreases, or no effect on overall affinities at equilibrium were detected. In the case of IAd/OVA 323-339, it was also found that acidic conditions influenced the binding capacity of class II molecules by increasing the fraction of sites available for peptide binding, presumably by favoring dissociation of endogenously bound, acid-sensitive peptides.
利用几种小鼠(IAd、IAk、IEd、IEk)和人类(DR1、DR5、DR7)的MHC特异性以及八个不同的II类限制性决定簇,分析了pH对II类 - 肽相互作用的影响。在直接结合试验中,酸性条件导致许多II类 - 肽组合的结合能力增强。IE分子似乎在pH 4.5左右结合最佳,而IA分子在5.5至6.5范围内显示出结合最佳值。相比之下,在大多数情况下,所研究的DR分子仅受到4.5至7.0范围内pH变化的轻微影响。尽管存在这些明显的同种型特异性趋势,但无法制定一般规则,因为即使对于相同的II类分子,在酸性条件下进行结合时,许多肽的结合能力可能会增加,对某些肽无影响,甚至对其他肽会降低。通过对三种不同的II类 - 肽组合(IAd/OVA 323 - 339、IAk/HEL 46 - 61和DR1/HA 307 - 319)进行动力学和平衡分析,更详细地分析了导致这种复杂行为的机制。发现酸性pH条件可影响II类 - 肽复合物的结合和解离速率。根据这些效应的净平衡,在平衡时检测到对整体亲和力的增加、降低或无影响。在IAd/OVA 323 - 339的情况下,还发现酸性条件通过增加可用于肽结合的位点分数来影响II类分子的结合能力,这可能是通过促进内源性结合的、酸敏感肽的解离来实现的。