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Exchange rates at the lipid-protein interface of the myelin proteolipid protein determined by saturation transfer electron spin resonance and continuous wave saturation studies.

机译:通过饱和转移电子自旋共振和连续波饱和研究确定了髓磷脂蛋白脂质蛋白的脂蛋白界面处的交换速率。

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摘要

The microwave saturation properties of various spin-labeled lipids in reconstituted complexes of the myelin proteolipid protein with dimyristoyl phosphatidylcholine have been studied both by conventional and saturation transfer electron spin resonance (ESR) spectroscopy. In the fluid phase, the conventional ESR spectra consist of a fluid and a motionally restricted (i.e., protein-associated) component, whose relative proportions can be determined by spectral subtractions and depend on the selectivity of the particular spin-labeled lipid for the protein. At 4 degrees C when the bulk lipid is in the gel phase, the integrated intensity of the saturation transfer ESR spectra displays a linear dependence on the fraction of motionally restricted lipid that is deduced from the conventional ESR spectra in the fluid phase, indicating the presence of distinct populations of free and protein-interacting lipid with no exchange between them on the saturation transfer ESR time scale in the gel phase. At 30 degrees C when the bulk lipid is in the fluid phase, the saturation transfer integral displays a nonlinear dependence on the fraction of motionally restricted lipid, consistent with exchange between the two lipid populations on the saturation transfer ESR time scale in the fluid phase. For lipid spin labels with different selectivities for the protein in complexes of fixed lipid/protein ratio, the data in the fluid phase are consistent with a constant (diffusion-controlled) on-rate for exchange at the lipid-protein interface. Values ranging between 1 and 9 x 10(6) s-1 are estimated for the intrinsic off-rates for exchange of spin-labeled stearic acid and phosphatidylcholine, respectively, at 30 degrees C. Conventional continuous wave saturation experiments lead to similar conclusions regarding the lipid exchange rates in the fluid and gel phases of the lipid/protein recombinants. The ESR saturation studies therefore demonstrate exchange on the time scale of the nitroxide spin-lattice relaxation at the lipid-protein interface of myelin proteolipid/dimyristoyl phosphatidylcholine complexes in the fluid phase but not in the gel phase.
机译:已通过常规和饱和转移电子自旋共振(ESR)光谱研究了髓磷脂蛋白脂质与二肉豆蔻酰基磷脂酰胆碱的重构复合物中各种自旋标记脂质的微波饱和特性。在流体相中,常规ESR光谱由流体和受运动限制(即与蛋白质相关)的组分组成,其相对比例可以通过光谱减法确定,并取决于特定自旋标记脂质对蛋白质的选择性。当本体脂质处于凝胶相时,在4摄氏度下,饱和转移ESR光谱的积分强度显示出与受运动限制的脂质比例的线性相关性,该比例是从液相中的常规ESR光谱推导出来的,表明存在的自由和与蛋白质相互作用的脂质的不同群体之间的交换,在凝胶相中的饱和转移ESR时间尺度上没有交换。在30摄氏度下,当大量脂质处于液相时,饱和传递积分对运动受限脂质的分数显示出非线性依赖性,这与两个脂质种群之间在液相饱和传递ESR时间尺度上的交换一致。对于在固定的脂质/蛋白质比率的复合物中具有不同选择性的蛋白质的脂质旋转标记,流体相中的数据与在脂质-蛋白质界面交换的常数(扩散控制)开通率一致。估计分别在30°C下自旋标记的硬脂酸和磷脂酰胆碱的交换的固有失速率的范围为1到9 x 10(6)s-1之间的值。常规连续波饱和实验得出有关以下结论的相似结论脂质/蛋白质重组体在流体和凝胶相中的脂质交换率。因此,ESR饱和度研究表明,在液相而不是在凝胶相中,髓磷脂蛋白脂/二肉豆蔻酰基磷脂酰胆碱复合物的脂蛋白界面处的氮氧化物自旋晶格弛豫的时间尺度上的交换。

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