Becker D, Reske-Kunz A B, Knop J, Reske K
Institut für Immunologie der Joh. Gutenberg Universität, Mainz, FRG.
Eur J Immunol. 1991 May;21(5):1213-20. doi: 10.1002/eji.1830210518.
The cell surface expression and biosynthesis of Langerhans cells (LC)-derived major histocompatibility complex (MHC) class II molecules from epidermal cells (EC) prepared freshly and cultured for up to 3 days was investigated. Based on the constitutive expression of MHC class II determinants by LC, a panning and magnetic bead selection procedure was employed, yielding 65% and 86% of I-A+ cells, respectively. Phenotypical and cytochemical examinations revealed that the two LC preparations were free of contaminating macrophages as well as B and T cells. Freshly prepared enriched LC were highly efficient in the stimulation of protein antigen-specific T cell clones, while LC purified from short-term cultured EC suspensions proved to be more efficient allogeneic stimulator cells than fresh LC. Comparative analysis of LC obtained from freshly prepared and from short-term-cultured EC preparations indicated an up-regulation of MHC class II determinants during short-term culture. Radioiodination analysis of LC selected by magnetic beads demonstrated prominent class II alpha and beta chain signals with only a minute fraction of invariant chains p35 and p45 being expressed at the cell surface. Unlike class II complexes derived from B cells, those from LC contained invariant chain fragment p20 in association with alpha/beta heterodimers at the plasma membrane. No qualitative differences between freshly isolated and 3-day cultured LC in cell surface expressed MHC class II components were detectable. Metabolic labeling with subsequent two-dimensional electrophoresis revealed distinct features of LC-derived MHC class II molecules with a high proportion of invariant chains in particular gamma and p40 and their extensive sialylation. While fresh and 1-day cultured LC exhibited appreciable levels of newly synthesized class II molecules, a dramatic down-regulation in class II and invariant chain synthesis was measured after 3 days of continuous in vitro culture.
对新鲜制备并培养长达3天的表皮细胞(EC)来源的朗格汉斯细胞(LC)衍生的主要组织相容性复合体(MHC)II类分子的细胞表面表达和生物合成进行了研究。基于LC对MHC II类决定簇的组成性表达,采用淘选和磁珠选择程序,分别获得了65%和86%的I-A+细胞。表型和细胞化学检查显示,这两种LC制剂均不含污染的巨噬细胞以及B和T细胞。新鲜制备的富集LC在刺激蛋白质抗原特异性T细胞克隆方面效率很高,而从短期培养的EC悬液中纯化的LC被证明是比新鲜LC更有效的同种异体刺激细胞。对从新鲜制备的和短期培养的EC制剂中获得的LC进行的比较分析表明,在短期培养期间MHC II类决定簇上调。对通过磁珠选择的LC进行放射性碘化分析,显示出突出的II类α和β链信号,仅在细胞表面表达一小部分恒定链p35和p45。与源自B细胞的II类复合体不同,源自LC的那些在质膜上与α/β异二聚体相关联含有恒定链片段p20。在细胞表面表达的MHC II类成分中,新鲜分离的和培养3天的LC之间未检测到定性差异。随后进行二维电泳的代谢标记揭示了LC衍生的MHC II类分子的独特特征,特别是γ和p40中恒定链比例很高以及它们广泛的唾液酸化。虽然新鲜的和培养1天的LC表现出可观水平的新合成II类分子,但在连续体外培养3天后,II类和恒定链合成出现了显著下调。