Solheim J C, Carreno B M, Smith J D, Gorka J, Myers N B, Wen Z, Martinko J M, Lee D R, Hansen T H
Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110.
J Immunol. 1993 Nov 15;151(10):5387-97.
CTL recognize class I MHC/peptide complexes on the surface of target cells. Crystallographic and serologic data have indicated that peptide ligands can influence the conformation of class I molecules and hence T cell recognition. How the binding of peptides with disparate sequence motifs affects the conformation of distinct regions within a class I molecule remains unknown. A series of site-directed mutants of the murine class I molecule H-2Ld was studied to address this question. These mutants were generated by in vitro mutagenesis and used to map the serologic epitopes recognized by a panel of Ld-reactive mAb. The influence of six different ligands on serologic recognition by these mAb was then examined. Of 12 mAb tested, only one, B22/249, was found to be significantly influenced by the bound peptide. Peptide discrimination by B22/249 was observed at the cell surface and in immunoprecipitates of Ld after incubation with two of the six ligands. The two peptides that caused suboptimal B22/249 recognition of Ld/peptide lack a proline at position 2, which is present in the other four peptides and has previously been defined as an anchor residue for Ld ligands. The epitope on Ld detected by mAb B22/249 includes residues 63 to 70 on the alpha 1 domain helix. Two of these residues are in pocket B, which computer modeling predicts to be in contact with the second residue of Ld-binding peptides. Therefore, these data imply that a mAb to a class I molecule can distinguish peptides with different motifs, possibly reflecting peptide-dependent conformational changes in the class I molecule.
细胞毒性T淋巴细胞(CTL)识别靶细胞表面的I类主要组织相容性复合体(MHC)/肽复合物。晶体学和血清学数据表明,肽配体可影响I类分子的构象,进而影响T细胞识别。具有不同序列基序的肽的结合如何影响I类分子内不同区域的构象仍不清楚。为了解决这个问题,研究了一系列小鼠I类分子H-2Ld的定点突变体。这些突变体通过体外诱变产生,并用于绘制一组Ld反应性单克隆抗体(mAb)识别的血清学表位图谱。然后检查了六种不同配体对这些mAb血清学识别的影响。在测试的12种mAb中,只有一种,即B22/249,被发现受到结合肽的显著影响。在用六种配体中的两种孵育后,在细胞表面和Ld的免疫沉淀中观察到B22/249对肽的区分。导致B22/249对Ld/肽识别欠佳的两种肽在第2位缺乏脯氨酸,而其他四种肽中存在脯氨酸,且脯氨酸先前已被定义为Ld配体的一个锚定残基。mAb B22/249检测到的Ld上的表位包括α1结构域螺旋上的63至70位残基。其中两个残基在口袋B中,计算机建模预测该口袋与Ld结合肽的第二个残基接触。因此,这些数据表明,针对I类分子的mAb可以区分具有不同基序的肽,这可能反映了I类分子中依赖于肽的构象变化。