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Mapping the HLA-DO/HLA-DM complex by FRET and mutagenesis

机译:通过FRET和诱变定位HLA-DO / HLA-DM复合物

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摘要

HLA-DO (DO) is a nonclassic class II heterodimer that inhibits the action of the class II peptide exchange catalyst, HLA-DM (DM), and influences DM localization within late endosomes and exosomes. In addition, DM acts as a chaperone for DO and is required for its egress from the endoplasmic reticulum (ER). These reciprocal functions are based on direct DO/DM binding, but the topology of DO/DM complexes is not known, in part, because of technical limitations stemming from DO instability. We generated two variants of recombinant soluble DO with increased stability [zippered DOaP11A (szDOv) and chimeric sDO-Fc] and confirmed their conformational integrity and ability to inhibit DM. Notably, we found that our constructs, as well as wild-type sDO, are inhibitory in the full pH range where DM is active (4.7 to ~6.0). To probe the nature of DO/DM complexes, we used intermolecular fluorescence resonance energy transfer (FRET) and mutagenesis and identified a lateral surface spanning the α1 and α2 domains of szDO as the apparent binding site for sDM. We also analyzed several sDM mutants for binding to szDOv and susceptibility to DO inhibition. Results of these assays identified a region of DM important for interaction with DO. Collectively, our data define a putative binding surface and an overall orientation of the szDOv/ sDM complex and have implications for the mechanism of DO inhibition of DM.
机译:HLA-DO(DO)是非经典的II类异二聚体,可抑制II类肽交换催化剂HLA-DM(DM)的作用,并影响DM在晚期内体和外体中的定位。另外,DM充当DO的伴侣,并且是从内质网(ER)流出的必需物质。这些互惠功能基于直接的DO / DM绑定,但部分原因是DO不稳定导致的技术限制,因此尚不知道DO / DM复合物的拓扑。我们生成了具有增加的稳定性的重组可溶性DO的两个变体[带拉链的DOaP11A(szDOv)和嵌合的sDO-Fc],并证实了它们的构象完整性和抑制DM的能力。值得注意的是,我们发现我们的构建体以及野生型sDO在DM具有活性的整个pH范围内(4.7至〜6.0)均具有抑制作用。为了探查DO / DM复合物的性质,我们使用了分子间荧光共振能量转移(FRET)和诱变作用,并确定了跨越szDO的α1和α2结构域的侧面是sDM的表观结合位点。我们还分析了几种sDM突变体与szDOv的结合以及对DO抑制的敏感性。这些测定的结果确定了对于与DO相互作用重要的DM区域。总的来说,我们的数据定义了假定的结合表面和szDOv / sDM复合物的总体方向,并且对DO抑制DM的机制有影响。

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