首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Class II major histocompatibility complex molecules of murine dendritic cells: synthesis sialylation of invariant chain and antigen processing capacity are down-regulated upon culture.
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Class II major histocompatibility complex molecules of murine dendritic cells: synthesis sialylation of invariant chain and antigen processing capacity are down-regulated upon culture.

机译:鼠树突状细胞的II类主要组织相容性复杂分子:培养后下调了合成不变链的唾液酸化和抗原加工能力。

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摘要

Dendritic cells (DCs), such as Langerhans cells (LCs) of the epidermis and the DCs of lymphoid organs such as spleen, are potent antigen presenting cells. DCs express high levels of major histocompatibility complex (MHC) class II molecules, but, partly because of the low numbers of primary DCs in any tissue, there has been no detailed study of the biochemistry of their class II molecules. This information may be needed to help explain recent findings that DCs process native protein antigens when freshly isolated from epidermis and spleen. Processing ceases during culture, yet a strong accessory function for activating resting T cells develops. We studied immunoprecipitates of DC class II and invariant chain (Ii) molecules by two-dimensional gel electrophoresis. We found that (i) freshly isolated LCs synthesize large amounts of class II and Ii polypeptides; (ii) Ii molecules that are known to be involved in antigen processing display an unusually large number of sialic acids in fresh LCs; (iii) with culture, class II and Ii synthesis decreases dramatically and has virtually ceased at 3 days; and (iv) the turnover of class II in pulse/chase experiments is slow, being undetectable over a 12- to 32-hr culture period, whereas the turnover of Ii is rapid. We conclude that MHC class II molecules of DCs do not seem to be qualitatively unique. However, the regulation of class II and Ii expression is distinctive in that biosynthesis proceeds vigorously for a short period of time and the newly synthesized class II remains stably on the cell surface, whereas Ii turns over rapidly. This may enable DCs to process and retain antigens in the peripheral tissues such as skin and migrate to the lymphoid organs to activate T cells there.
机译:树突状细胞(DC),例如表皮的朗格汉斯细胞(LC)和淋巴器官的DC(例如脾脏)的DC,是有效的抗原呈递细胞。 DCs表达高水平的主要组织相容性复合体(MHC)II类分子,但部分由于任何组织中初级DC的数量少,因此尚未对其II类分子的生物化学进行详细研究。可能需要此信息来帮助解释最近的发现,即从表皮和脾脏中新鲜分离出来的DC会处理天然蛋白质抗原。在培养过程中加工过程停止,但仍产生了激活静止T细胞的强大辅助功能。我们通过二维凝胶电泳研究了II类DC和恒定链(Ii)分子的免疫沉淀。我们发现(i)新鲜分离的LC合成了大量的II类和Ii类多肽; (ii)已知参与抗原加工的IIi分子在新鲜LC中显示出异常大量的唾液酸; (iii)在培养的情况下,II类和Ii类的合成急剧下降,并在3天时实际上停止了; (iv)脉冲/追逐实验中II类的转换速度很慢,在12至32小时的培养期间无法检测到,而Ii的转换速度却很快。我们得出结论,DC的MHC II类分子似乎在质上不是唯一的。然而,II类和Ii表达的调节是独特的,因为生物合成在短时间内有力地进行,并且新合成的II类稳定地保持在细胞表面上,而Ii迅速翻转。这可以使DCs在周围组织例如皮肤中处理和保留抗原,并迁移到淋巴器官以在那里活化T细胞。

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