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首页> 外文期刊>The Journal of Experomental Medicine >Presentation of Exogenous Antigens on Major Histocompatibility Complex (MHC) Class I and MHC Class II Molecules Is Differentially Regulated during Dendritic Cell Maturation
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Presentation of Exogenous Antigens on Major Histocompatibility Complex (MHC) Class I and MHC Class II Molecules Is Differentially Regulated during Dendritic Cell Maturation

机译:树突状细胞成熟过程中主要组织相容性复合体(MHC)I类和MHC II类分子上的外源抗原的表达受到不同的调节。

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During maturation, dendritic cells (DCs) regulate their capacity to process and present major histocompatibility complex (MHC) II–restricted antigens. Here we show that presentation of exogenous antigens by MHC I is also subject to developmental control, but in a fashion strikingly distinct from MHC II. Immature mouse bone marrow–derived DCs internalize soluble ovalbumin and sequester the antigen intracellularly until they receive an appropriate signal that induces cross presentation. At that time, peptides are generated in a proteasome-dependent fashion and used to form peptide–MHC I complexes that appear at the plasma membrane. Unlike MHC II, these events do not involve a marked redistribution of preexisting MHC I molecules from intracellular compartments to the DC surface. Moreover, out of nine stimuli well known to induce the phenotypic maturation of DCs and to promote MHC II presentation, only two (CD40 ligation, disruption of cell–cell contacts) activated cross presentation on MHC I. In contrast, formation of peptide–MHC I complexes from endogenous cytosolic antigens occurs even in unstimulated, immature DCs. Thus, the MHC I and MHC II pathways of antigen presentation are differentially regulated during DC maturation.
机译:在成熟过程中,树突状细胞(DC)调节其加工能力,并呈递主要的组织相容性复合物(MHC)II限制的抗原。在这里,我们表明由MHC I呈递的外源抗原也受到发育控制,但其方式明显不同于MHC II。未成熟的小鼠骨髓来源的DC将可溶性卵清蛋白内在化,并在细胞内隔离抗原,直到它们收到诱导交叉呈递的适当信号。那时,肽以蛋白酶体依赖性的方式产生,并用于形成质膜上出现的肽-MHC I复合物。与MHC II不同,这些事件不涉及将预先存在的MHC I分子从细胞内区室到DC表面的明显重新分布。此外,在九种众所周知的诱导DC的表型成熟并促进MHC II呈递的刺激中,只有两个(CD40连接,破坏细胞间接触)激活了MHC I的交叉呈递。来自内源性胞质抗原的I复合物即使在未刺激的未成熟DC中也会发生。因此,抗原呈递的MHC I和MHC II途径在DC成熟过程中受到差异调节。

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