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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Solid-State NMR Investigations of the MHC II Transmembrane Domains: Topological Equilibria and Lipid Interactions
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Solid-State NMR Investigations of the MHC II Transmembrane Domains: Topological Equilibria and Lipid Interactions

机译:MHC II跨膜结构域的固态NMR研究:拓扑均衡和脂质相互作用

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The major histocompatibility complex class II (MHC II) membrane proteins are key players in the adaptive immune response. An aberrant function of these molecules is associated with a large number of autoimmune diseases such as diabetes type I and chronic inflammatory diseases. The MHC class II is assembled from DQ alpha 1 and DQ beta 1 which come together as a heterodimer through GXXXG-mediated protein-protein interactions and a highly specific protein-sphingomyelin-C18 interaction motif located on DQA1. This association can have important consequences in regulating the function of these membrane proteins. Here, we investigated the structure and topology of the DQA1 and DQB1 transmembrane helical domains by CD-, oriented H-2 and N-15 solid-state NMR spectroscopies. The spectra at peptide-to-lipid ratios of 0.5 to 2 mol% are indicative of a topological equilibrium involving a helix crossing the membrane with a tilt angle of about 20 degrees and another transmembrane topology with around 30 degrees tilt. The latter is probably representing a dimer. Furthermore, at the lowest peptide-to-lipid ratio, a third polypeptide population becomes obvious. Interestingly, the DQB1 and to a lesser extent the DQA1 transmembrane helical domains exhibit a strong fatty acyl chain disordering effect on the inner segments of the H-2-labelled palmitoyl chain of POPC bilayers. This phosphatidylcholine disordering requires the presence of sphingomyelin-C18 suggesting that the ensemble of transmembrane polypeptide and sphingolipid exerts positive curvature strain.
机译:主要的组织相容性复合物类II(MHC II)膜蛋白是适应性免疫反应中的关键球员。这些分子的异常功能与大量自身免疫疾病相关,例如糖尿病I型和慢性炎症疾病。 MHC II类由DQα1和DQβ1组装,所述DQα1和DQβ1通过GXXXG介导的蛋白质 - 蛋白质相互作用和位于DQA1上的高度特异性蛋白质 - 鞘蛋白-C18相互作用基序作为异二聚体。该协会对调节这些膜蛋白的功能具有重要的影响。在这里,我们研究了DQA1和DQB1跨膜螺旋结构域的结构和拓扑通过CD-,取向的H-2和N-15固态NMR光谱。肽 - 脂质比为0.5-2摩尔%的光谱表明介于致膜倾斜角度约20度和其他约30度倾斜的跨膜拓扑的螺旋状平衡。后者可能代表二聚体。此外,在最低肽 - 脂质比下,第三个多肽群变得明显。有趣的是,DQB1和较小程度,DQA1跨膜螺旋结构域对Popc双层的H-2标记的棕榈酰基链的内部区段表现出强烈的脂肪酰基链紊乱作用。该磷脂酰胆碱失调需要鞘磷脂-C18的存在,表明跨膜多肽和鞘磷脂的集合施加正曲率抑制株。

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