首页> 外文期刊>Frontiers in Molecular Biosciences >Structure, topology and dynamics of membrane-inserted polypeptides and lipids by solid-state NMR spectroscopy: Investigations of the transmembrane domains of the DQ beta-1 subunit of the MHC II receptor and of the COP I protein p24
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Structure, topology and dynamics of membrane-inserted polypeptides and lipids by solid-state NMR spectroscopy: Investigations of the transmembrane domains of the DQ beta-1 subunit of the MHC II receptor and of the COP I protein p24

机译:固态NMR光谱分析膜插入的多肽和脂质的结构,拓扑和动力学:MHC II受体的DQ beta-1亚基和COP I蛋白p24的跨膜结构域研究

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MHC class II receptors carry important function in adaptive immunity and their malfunctioning is associated with diabetes type I, chronic inflammatory diseases and other autoimmune diseases. The protein assembles from the DQ alpha-1 and DQ beta-1 subunits where the transmembrane domains of these type I membrane proteins have been shown to be involved in homo- and heterodimer formation. Furthermore, the DQ alpha 1 chain carries a sequence motif that has been first identified in the context of p24, a protein involved in the formation of COPI vesicles of the intracellular transport machinery, to specifically interact with sphingomyelin-C18 (SM-C18). Here we investigated the membrane interactions and dynamics of DQ beta-1 in liquid crystalline POPC phospholipid bilayers by oriented 15N solid-state NMR spectroscopy. The 15N resonances are indicative of a helical tilt angle of the membrane anchor sequence around 20o. Two populations can be distinguished by their differential dynamics probably corresponding the DQ beta-1 mono- and homodimer. Whereas this equilibrium is hardly affected by the addition of 5 mole% SM-C18 a single population is visible in DMPC lipid bilayers suggesting that the lipid saturation is an important parameter. Furthermore, the DQ alpha-1, DQ beta-1 and p24 transmembrane helical domains were reconstituted into POPC or POPC/SM-C18 lipid bilayers where the fatty acyl chain of either the phosphatidylcholine or of the sphingolipid have been deuterated. Interestingly in the presence of both sphingolipid and polypeptide a strong decrease in the innermost membrane order of the POPC palmitoyl chain is observed, an effect that is strongest for DQ beta-1. In contrast, for the first time the polypeptide interactions were monitored by deuteration of the stearoyl chain of SM-C18. The resulting 2H solid-state NMR spectra show an increase in order for p24 and DQ alpha-1 which both carry the SM recognition motif. Thereby the data are suggestive that SM-C18 together with the transmembrane domains form structures imposing positive curvature strain on the surrounding POPC lipids. This effect is attenuated when SM-C18 is recognized by the protein.
机译:MHC II类受体在适应性免疫中发挥重要作用,其功能障碍与I型糖尿病,慢性炎症性疾病和其他自身免疫性疾病有关。该蛋白从DQ alpha-1和DQ beta-1亚基组装而成,其中这些I型膜蛋白的跨膜结构域已显示参与同二聚体和异二聚体的形成。此外,DQ alpha 1链带有一个序列基序,该序列基序已在p24(与细胞内转运机制的COPI囊泡形成有关的蛋白质)的背景下首次鉴定,以与鞘磷脂-C18(SM-C18)特异性相互作用。在这里,我们通过定向15 N固态NMR光谱研究了液晶POPC磷脂双层中DQ beta-1的膜相互作用和动力学。 15N共振表明膜锚序列的螺旋倾斜角约为20o。两个种群可以通过其差异动力学来区分,可能与DQ beta-1单聚体和同二聚体相对应。尽管此平衡几乎不受添加5摩尔%SM-C18的影响,但在DMPC脂质双层中可见单个种群,这表明脂质饱和度是重要的参数。此外,DQ alpha-1,DQ beta-1和p24跨膜螺旋结构域被重构为POPC或POPC / SM-C18脂质双层,其中磷脂酰胆碱或鞘脂的脂肪酰基链已经氘化。有趣的是,在鞘脂和多肽均存在的情况下,观察到POPC棕榈酰链的最内膜顺序强烈降低,这种作用对于DQ beta-1最强。相反,首次通过SM-C18的硬脂酰基链的氘化监测多肽相互作用。所得的2H固态NMR光谱显示p24和DQ alpha-1均具有SM识别基序的顺序增加。因此,数据暗示SM-C18与跨膜结构域一起形成在周围的POPC脂质上施加正曲率应变的结构。当SM-C18被蛋白质识别时,这种作用减弱。

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