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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The headgroup orientation of dimyristoylphosphatidylinositol-4-phosphate in mixed lipid bilayers: a neutron diffraction study
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The headgroup orientation of dimyristoylphosphatidylinositol-4-phosphate in mixed lipid bilayers: a neutron diffraction study

机译:混合脂质双层中二豆蔻油磷脂酰肌醇-4-磷酸的头基取向:中子衍射研究

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The trisodium salt of dimyristoylphosphatidylinositol-4-phosphate (DMPI-4P) has been synthesised specifically deuterated at particular sites in the headgroup. These materials have been used in neutron diffraction experiments, which successfully located the position (depth) of each of these deuterated sites to within ±0.5 ? in a mixed model membrane (a 1:1 molar mixture of DMPI-4P with dimyristoyl-phosphatidylcholine, DMPC, in the Lα phase, hydrated to the level of 28 water molecules per lipid molecule). The diffracted intensities were measured at four different D2O/H2O ratios and six orders of diffraction were obtained. These data sets, in conjunction with computer modelling, have been used to determine the orientation of the inositol ring of DMPI-4P, localising each vertical H–H distance to within approximately ±0.03 ?. The orientation of the inositol ring is found to be one in which the C5 hydroxyl is extended out into the aqueous medium. This is, therefore, the most accessible site for water-borne reagents. This may be significant for the important pathway leading from PI-4P to PI-4,5P2. On the assumption that the P/ODAG bond is orientated parallel to the bilayer normal, these results are consistent with two possible conformations for the portion of the headgroup connecting the diacylglycerol to the inositol ring. Distinction between these two is difficult, but one may be favoured since the other involves close atom–atom contacts.
机译:已经合成了在头基团中的特定位点氘化的二肉豆蔻基磷脂酰肌醇-4-磷酸三钠盐(DMPI-4P)。这些材料已用于中子衍射实验中,该实验成功地将每个氘代位置的位置(深度)定位在±0.5?在混合模型膜中(DMPI-4P与二豆蔻酰基磷脂酰胆碱DMPC的1:1摩尔混合物在Lα相中水合至每个脂质分子28个水分子的水平)。在四个不同的D2O / H2O比下测量衍射强度,得到六个衍射级。这些数据集与计算机建模相结合,已用于确定DMPI-4P肌醇环的方向,将每个垂直H–H距离定位在大约±0.03?之内。发现肌醇环的取向是其中C5羟基延伸到水性介质中的取向。因此,这是水性试剂最容易接近的位置。这对于从PI-4P到PI-4,5P2的重要途径可能很重要。假设P / ODAG键平行于双层法线取向,则这些结果与将二酰基甘油连接至肌醇环的头基部分的两个可能构象一致。很难区分这两者,但一个可能会受到青睐,因为另一个涉及紧密的原子-原子接触。

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