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Solution NMR structure of an immunodominant epitope of myelin basic protein - Conformational dependence on environment of an intrinsically unstructured protein

机译:髓鞘碱性蛋白免疫优势表位的溶液NMR结构-本质上非结构化蛋白对环境的构象依赖性

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Using solution NMR spectroscopy, three-dimensional structures have been obtained for an 18-residue synthetic polypeptide fragment of 18.5 kDa myelin basic protein (MBP, human residues Q81-T98) under three conditions emulating the protein's natural environment in the myelin membrane to varying degrees: (a) an aqueous solution (100 mm KCl pH 6.5), (b) a mixture of trifluoroethanol (TFE-d(2)) and water (30 : 70% v/v), and (c) a dispersion of 100 mm dodecylphosphocholine (DPC-d(38), 1 : 100 protein/lipid molar ratio) micelles. This polypeptide sequence is highly conserved in MBP from mammals, amphibians, and birds, and comprises a major immunodominant epitope (human residues N83-T92) in the autoimmune disease multiple sclerosis. In the polypeptide fragment, this epitope forms a stable, amphipathic, alpha helix under organic and membrane-mimetic conditions, but has only a partially helical conformation in aqueous solution. These results are consistent with recent molecular dynamics simulations that showed this segment to have a propensity to form a transient ahelix in aqueous solution, and with electron paramagnetic resonance (EPR) experiments that suggested a alpha-helical structure when bound to a membrane [I. R. Bates, J. B. Feix, J. M. Boggs & G. Harauz (2004) J Biol Chem, 279, 5757-5764]. The high sensitivity of the epitope structure to its environment is characteristic of intrinsically unstructured proteins, like MBP, and reflects its association with diverse ligands such as lipids and other proteins.
机译:使用溶液NMR光谱学,已在三个条件下模拟了蛋白在髓鞘膜中的自然环境的三种条件下,获得了18个残基的18.5 kDa髓磷脂碱性蛋白(MBP,人残基Q81-T98)的18个残基合成多肽片段的三维结构:(a)水溶液(100 mm KCl pH 6.5),(b)三氟乙醇(TFE-d(2))和水(30:70%v / v)的混合物,和(c)100的分散体十二烷基磷酸胆碱(DPC-d(38),1:100蛋白质/脂质摩尔比)胶束。该多肽序列在哺乳动物,两栖动物和鸟类的MBP中高度保守,并且在自身免疫性疾病多发性硬化症中包含主要的免疫优势表位(人残基N83-T92)。在多肽片段中,该表位在有机和拟膜条件下形成稳定的两亲性α螺旋,但在水溶液中仅具有部分螺旋构象。这些结果与最近的分子动力学模拟相一致,分子模拟表明该片段具有在水溶液中形成瞬态螺旋的倾向,并且与电子顺磁共振(EPR)实验表明与膜结合时具有α螺旋结构。 R. Bates,J。B. Feix,J。M. Boggs&G. Harauz(2004)J Biol Chem,279,5757-5764]。表位结构对其环境的高度敏感性是固有非结构化蛋白质(如MBP)的特征,并反映了其与各种配体(如脂质和其他蛋白质)的关联。

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