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来自短期体外培养的表皮朗格汉斯细胞对MHC II类蛋白和恒定链的非协调合成。

Non-coordinate synthesis of MHC class II proteins and invariant chains by epidermal Langerhans cells derived from short-term in vitro culture.

作者信息

Neiss U, Reske K

机构信息

Institut für Immunologie, Johannes Gutenberg Universität, Mainz, Germany.

出版信息

Int Immunol. 1994 Jan;6(1):61-71. doi: 10.1093/intimm/6.1.61.

Abstract

Epidermal cells (EC) prepared from Lewis rat skin contained 2-3% class II+, LCA+ Langerhans cells (LC). LC enriched from freshly isolated EC suspensions proved highly effective accessory cells when presenting the nominal antigen OVA to an RT1.Bl-restricted ovalbumin (OVA)-specific rat T cell clone. Short-term preculture of the EC resulted in diminished OVA presenting capacity of the LC. Flow cytometry (FCM) analysis of class II and gamma chain expression revealed an up-regulation of class II on the LC's cell surface, consistent with earlier findings in mouse and human. However, while the presence of gamma chains in mouse LC was reported to decline to negligible levels during culture we observed substantial gamma surface expression on 3 day cultured rat LC, accompanied by increasing quantities of gamma inside the cells as revealed by FCM analysis on permeabilized cells. Biosynthetic labeling of panning-enriched LC from fresh and cultured EC confirmed and extended the immunocytological analysis. In contrast to the synthesis of class II proteins, that declined during culture to background levels, gamma chain synthesis was strongly augmented after 1 day in culture and remained at prominent levels throughout the culture period. In LC pulse labeled for 4 h and subjected to a 3 day chase period prominent quantities of labeled class II complexes were detectable with the majority of the dimers exhibiting the compact (C)-type folding form. On the basis of our findings a novel function of the invariant gamma chain is suggested to be effective in LC.

摘要

从Lewis大鼠皮肤制备的表皮细胞(EC)含有2%-3%的II类阳性、LCA阳性朗格汉斯细胞(LC)。从新鲜分离的EC悬液中富集的LC在将名义抗原OVA呈递给RT1.B1限制性卵清蛋白(OVA)特异性大鼠T细胞克隆时,被证明是高效的辅助细胞。EC的短期预培养导致LC的OVA呈递能力下降。对II类和γ链表达的流式细胞术(FCM)分析显示,LC细胞表面的II类上调,这与在小鼠和人类中的早期发现一致。然而,虽然据报道小鼠LC中的γ链在培养过程中下降到可忽略不计的水平,但我们观察到培养3天的大鼠LC表面有大量γ表达,同时通过对通透细胞的FCM分析显示细胞内γ的数量也在增加。对新鲜和培养的EC中淘选富集的LC进行生物合成标记,证实并扩展了免疫细胞分析。与培养过程中II类蛋白合成下降到背景水平相反,γ链合成在培养1天后强烈增加,并在整个培养期保持在显著水平。在进行4小时脉冲标记并经过3天追踪期的LC中,可检测到大量标记的II类复合物,大多数二聚体呈现紧密(C)型折叠形式。基于我们的发现,提示恒定γ链在LC中具有一种新功能。

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