Landais D, Marchetto S, Waltzinger C, Pierres M, Benoist C, Mathis D
Laboratoire de Génétique Moléculaire des Eucaryotes, CNRS, Strasbourg, France.
J Immunol. 1988 Jul 15;141(2):667-71.
This study explores the limitations on variability at a polymorphic position of an MHC class II molecule. Using a convenient and rapid method termed "slot-machine mutagenesis," we have converted Glu75 on the A kappa-chain to 15 alternative amino acids. This residue is of interest because it is an immunodominant site on the A kappa alpha chain and because it participates in certain T cell epitopes. The wild-type and mutant A kappa alpha cDNA were transfected into L cells (together with the A kappa beta cDNA and a selection marker), and transfectants displaying high surface levels of the A kappa complex were selected and expanded. We sought to examine three questions: what is the effect of these mutations on the expression and overall conformation of the A alpha: A beta complex? How do these diverse mutations influence mAb epitopes for which Glu75 makes a direct contribution to specificity? Do such substitutions affect T cell recognition of the A kappa alpha:A kappa beta complex? The answers to these three questions are quite different. Position 75 of the A alpha chain can accommodate essentially all chemically divergent amino acids without major consequences for expression and overall A alpha:A beta structure. In contrast, mAb that recognize Glu75-dependent epitopes are extremely particular about the amino acid residing at this position. T cells are less fastidious: those that are affected by the mutations still recognize a number of substitutions. These data emphasize the tolerance of MHC molecules to evolutionary tampering.
本研究探讨了MHC II类分子多态性位点变异性的限制。使用一种便捷快速的方法——“老虎机诱变”,我们已将A κ链上的Glu75替换为15种替代氨基酸。该残基备受关注,因为它是A κα链上的免疫显性位点,且参与某些T细胞表位。将野生型和突变型A κα cDNA转染到L细胞中(同时转染A κβ cDNA和一个选择标记),选择并扩增表面高水平表达A κ复合物的转染子。我们试图研究三个问题:这些突变对Aα:Aβ复合物的表达和整体构象有何影响?这些不同的突变如何影响Glu75对其特异性有直接贡献的单克隆抗体表位?这种替换是否会影响T细胞对A κα:A κβ复合物的识别?这三个问题的答案截然不同。Aα链的75位基本上可以容纳所有化学性质不同的氨基酸,而对表达和整体Aα:Aβ结构没有重大影响。相比之下,识别依赖Glu75的表位的单克隆抗体对位于该位置的氨基酸极为挑剔。T细胞则不那么挑剔:那些受突变影响的T细胞仍然能够识别多种替换。这些数据强调了MHC分子对进化干扰的耐受性。