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首页> 外文期刊>The journal of immunology >Transmembrane Domain-Mediated Colocalization of HLA-DM and HLA-DR Is Required for Optimal HLA-DM Catalytic Activity
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Transmembrane Domain-Mediated Colocalization of HLA-DM and HLA-DR Is Required for Optimal HLA-DM Catalytic Activity

机译:HLA-DM和HLA-DR跨​​膜域介导的共定位是最佳HLA-DM催化活性所必需的

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HLA-DM catalyzes peptide loading and exchange reactions by MHC class II molecules. Soluble recombinant DM, lacking transmembrane and cytoplasmic domains, was observed to have 200- to 400-fold less activity compared with the full-length protein in assays measuring DM-catalyzed peptide dissociation from purified HLA-DR1 in detergent solutions. Additional studies with truncated soluble DR1 demonstrated that transmembrane domains in DR1 molecules are also required for optimal activity. The potential requirement for specific interaction between the transmembrane domains of DM and DR was ruled out in experiments with chimeric DR1 molecules containing transmembrane domains from either DM or the unrelated protein CD80. These results suggested that the major role of the transmembrane domains is to facilitate colocalization of DM and DR in detergent micelles. The latter conclusion was further supported by the observation that HLA-DM-catalyzed peptide binding to certain murine class II proteins is increased by reducing the volume of detergent micelles. The importance of membrane colocalization was directly demonstrated in experiments in which DM and DR were reconstituted separately or together into membrane bilayers in unilamellar liposomes. Our findings demonstrate the importance of membrane anchoring in DM activity and underscore the potential importance of membrane localization in regulating peptide exchange by class II molecules.
机译:HLA-DM通过II类MHC分子催化肽的负载和交换反应。在测定去污剂溶液中纯化的HLA-DR1中DM催化的肽解离的测定中,与全长蛋白相比,缺少跨膜和胞质结构域的可溶性重组DM活性降低了200到400倍。截断的可溶性DR1的其他研究表明,DR1分子中的跨膜结构域也需要最佳活性。 DM和DR跨膜结构域之间特异性相互作用的潜在需求在含有DM或无关蛋白CD80跨膜结构域的嵌合DR1分子的实验中被排除。这些结果表明跨膜结构域的主要作用是促进去污剂胶束中DM和DR的共定位。后一种结论进一步得到了以下观察的支持:通过减少去污剂胶束的体积,HLA-DM催化的肽与某些鼠类II蛋白的结合增加。膜共定位的重要性已在将DM和DR分别或一起重组为单层脂质体的膜双层的实验中得到了证明。我们的发现证明了膜锚定在DM活性中的重要性,并强调了膜定位在通过II类分子调节肽交换中的潜在重要性。

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