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A Defective Viral Superantigen-Presenting Phenotype in HLA-DR Transfectants Is Corrected by CIITA

机译:CIITA纠正了HLA-DR转染子中存在缺陷的病毒超抗原表型

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Activation of T lymphocytes by mouse mammary tumor virus superantigen (vSAg) requires binding to MHC class II molecules. The subcellular location where functional interactions occur between MHC class II molecules and vSAgs is still a matter of debate. To gain further insight into this issue, we have used human epithelial HeLa cells expressing HLA-DR1. Surprisingly, the human cells were unable to present transfected vSAg7 or vSAg9 to a series of murine T cell hybridomas. The defect is not related to a lack of vSAg processing, because these cells can indirectly activate T cells after coculture in the presence of B lymphocytes. However, after IFN-γ treatment, the HeLa DR1+ cells became apt at directly presenting the vSAg. Furthermore, transfection of CIITA was sufficient to restore presentation. Reconstitution experiments demonstrated the necessity of coexpressing HLA-DM and invariant chain (Ii) for efficient vSAg presentation. Interestingly, inclusion of a dileucine motif in the DRβ cytoplasmic tail bypassed the need for HLA-DM expression and allowed the efficient presentation of vSAg7 in the presence of Ii. A similar trafficking signal was included in vSAg7 by replacing its cytoplasmic tail with the one of Ii. However, sorting of this chimeric Ii/vSAg molecule to the endocytic pathway completely abolished both its indirect and direct presentation. Together, our results suggest that functional vSAgs-DR complexes form after the very late stages of class II maturation, most probably at the cell surface.
机译:小鼠乳腺肿瘤病毒超抗原(vSAg)激活T淋巴细胞需要结合II类MHC分子。 MHC II类分子和vSAg之间发生功能相互作用的亚细胞位置仍然是一个争论的问题。为了获得对该问题的进一步了解,我们使用了表达HLA-DR1的人上皮HeLa细胞。令人惊讶地,人类细胞不能将转染的vSAg7或vSAg9呈递给一系列鼠T细胞杂交瘤。该缺陷与缺乏vSAg处理无关,因为这些细胞在B淋巴细胞存在下共培养后可以间接激活T细胞。但是,经过IFN-γ处理后,HeLa DR1 +细胞倾向于直接呈递vSAg。此外,CIITA转染足以恢复外观。重建实验证明了共表达HLA-DM和不变链(Ii)对于有效vSAg表达的必要性。有趣的是,在DRβ细胞质尾中包含双亮氨酸基序绕过了对HLA-DM表达的需求,并允许在存在Ii的情况下有效呈现vSAg7。通过用Ii取代了它的胞质尾巴,在vSAg7中包含了类似的运输信号。但是,将这种嵌合的Ii / vSAg分子分选到胞吞途径完全消除了它的间接和直接呈现。总之,我们的结果表明,功能性vSAgs-DR复合物是在II类成熟的非常晚期之后形成的,最有可能在细胞表面形成。

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