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外源性糖肽与MHC-I类分子的结合与TAP转运体、β2-微球蛋白的表达及pH值的关系

External glycopeptide binding to MHC class-I in relation to expression of TAP transporters, beta 2-microglobulin and to pH.

作者信息

Abdel-Motal U M, Dahmén J, Liu T, Ljunggren H G, Jondal M

机构信息

Microbiology and Tumor Biology Center (MTC), Karolinska Institute, Stockholm, Sweden.

出版信息

Immunol Lett. 1996 Dec 1;54(1):31-5. doi: 10.1016/s0165-2478(96)02637-5.

Abstract

MHC class-I binding glycopeptides are easily visualized on the cell surface by carbohydrate specific monoclonal antibodies. By comparing the staining intensity between anti-carbohydrate and anti-MHC class-I specific monoclonal antibodies, an estimation of the fraction of peptide accessible 'empty' sites on the cell surface of MHC class-I molecules can be made. This system was used to analyze glycopeptide binding to MHC class-I molecules in relation to transporter associated with antigen processing (TAP) peptide transporters and beta 2-M expression, using gene targeted mice, and in relation to pH. Approximately 15, 40, and 95% 'empty' Db molecules were found on activated T cells from normal, beta 2-M-/- and TAP -/- mice, respectively. The ASN9-6h-Gal2 glycopeptide also bound to transfected 'empty' Db molecules on T1-Db, T2-Db and T3-Db cells with a preference for T2-Db cells, lacking TAP peptide transporters. The stability of glycopeptide binding to H-2Db is also highest on T2-Db cells. pH was found to influence binding either positively or negatively, using four different glycopeptides, binding either to Db or Kb. We conclude that external glycopeptide binding may reflect important functional properties in the MHC class-I system and that pH in different processing compartments might influence the expressed peptide repertoire.

摘要

MHC I类结合糖肽可通过碳水化合物特异性单克隆抗体在细胞表面轻松可视化。通过比较抗碳水化合物和抗MHC I类特异性单克隆抗体之间的染色强度,可以估计MHC I类分子细胞表面上可及的“空”位点的肽段比例。该系统用于分析糖肽与MHC I类分子的结合,这与抗原加工相关转运体(TAP)肽转运体和β2 -微球蛋白(β2-M)的表达有关,使用基因靶向小鼠进行研究,同时也研究了其与pH的关系。分别在正常、β2-M基因敲除小鼠和TAP基因敲除小鼠的活化T细胞上发现了大约15%、40%和95%的“空”Db分子。ASN9-6h-Gal2糖肽也与T1-Db、T2-Db和T3-Db细胞上转染的“空”Db分子结合,对缺乏TAP肽转运体的T2-Db细胞有偏好。糖肽与H-2Db结合的稳定性在T2-Db细胞上也是最高的。使用四种不同的糖肽,发现pH对其与Db或Kb的结合有正向或负向影响。我们得出结论,外部糖肽结合可能反映了MHC I类系统中的重要功能特性,并且不同加工区室的pH可能会影响所表达的肽库。

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