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Cholesterol lowering drug may influence cellular immune response by altering MHC II function

机译:降低胆固醇的药物可能会通过改变MHC II功能影响细胞免疫反应

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摘要

Major histocompatibility complex class II (MHC II) expressed on the surface of antigen-presenting cells (APCs) displays peptides to CD4+ T cells. Depletion of membrane cholesterol from APCs by methyl β-cyclodextrin treatment compromises peptide-MHC II complex formation coupled with impaired binding of conformational antibody, which binds close to the peptide binding groove of MHC II. Interestingly, the total cell surface of MHC II remains unaltered. These defects can be corrected by restoring membrane cholesterol. In silico docking studies with a three-dimensional model showed the presence of a cholesterol binding site in the transmembrane domain of MHC II (TM-MHC-II). From the binding studies it was clear that cholesterol, indeed, interacts with the TM-MHC-II and alters its conformation. Mutation of cholesterol binding residues (F240, L243, and F246) in the TM-MHC-II decreased the affinity for cholesterol. Furthermore, transfection of CHO cells with full-length mutant MHC II, but not wild-type MHC II, failed to activate antigen-specific T cells coupled with decreased binding of conformation-specific antibodies. Thus, cholesterol-induced conformational change of TM-MHC-II may allosterically modulate the peptide binding groove of MHC II leading to T cell activation.
机译:抗原呈递细胞(APC)表面表达的主要组织相容性复合体II类(MHC II)展示了CD4 + T细胞的肽。通过甲基β-环糊精处理从APC中消耗膜胆固醇,会损害肽-MHC II复合物的形成,并损害构象抗体的结合,后者结合在MHC II的肽结合槽附近。有趣的是,MHC II的总细胞表面保持不变。这些缺陷可以通过恢复膜胆固醇来纠正。在三维模型的计算机对接研究中,MHC II(TM-MHC-II)的跨膜结构域中存在胆固醇结合位点。从结合研究中可以明显看出,胆固醇确实与TM-MHC-II相互作用并改变其构象。 TM-MHC-II中胆固醇结合残基(F240,L243和F246)的突变降低了对胆固醇的亲和力。此外,用全长突变体MHC II(而不是野生型MHC II)转染CHO细胞不能激活抗原特异性T细胞,而构象特异性抗体的结合减少。因此,胆固醇诱导的TM-MHC-II的构象变化可能会变构地调节MHC II的肽结合沟,从而导致T细胞活化。

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