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生物合成氘代哺乳动物组织的氘核磁共振光谱学。

Deuterium NMR spectroscopy of biosynthetically deuterated mammalian tissues.

作者信息

Curatolo W, Jungalwala F B, Sears B, Tuck L, Neuringer L J

出版信息

Biochemistry. 1985 Jul 30;24(16):4360-4. doi: 10.1021/bi00337a017.

Abstract

The choline-containing phospholipids of mammalian membranes have been biosynthetically deuterated by raising rats on a diet supplemented with [HOCH2CH2N(CD3)3]+Cl- or [HOCD2CH2N(CH3)3]+Cl-. Deuterium NMR spectra have been obtained from excised deuterated brain, sciatic nerve, heart, and lung, from isolated brain myelin and brain microsomes, and from aqueous dispersions of lipid extracts. Measurements of residual quadrupole splittings for excised deuterated neural tissues demonstrate that the orientational order of the choline head group is similar to that observed in model membranes. The spin-lattice relaxation time of the choline head group in deuterated neural tissue is indistinguishable from that observed in model membranes. These results support the proposal that the conformation and motional dynamics of the choline head groups of the bulk choline-containing lipids of neural tissue are similar to those in model membranes. Spectra of biosynthetically deuterated brain myelin and brain microsomes exhibit similar quadrupole splittings. Since these membranes have significantly different protein contents, these results indicate that no strong polar interactions exist between membrane proteins and the choline head groups of choline-containing membrane lipids. Spectra of intact deuterated heart and lung exhibit broad lines and a range of quadrupole splittings. Due to the heterogeneous nature of these tissues, interpretation is difficult. However, no strong ordering of the lipid head group by protein is indicated.

摘要

通过用添加了[HOCH2CH2N(CD3)3]+Cl-或[HOCD2CH2N(CH3)3]+Cl-的饲料喂养大鼠,已对哺乳动物膜中含胆碱的磷脂进行了生物合成氘代。已从切除的氘代脑、坐骨神经、心脏和肺、从分离的脑髓鞘和脑微粒体以及从脂质提取物的水分散体中获得了氘核磁共振谱。对切除的氘代神经组织的剩余四极分裂的测量表明,胆碱头部基团的取向顺序与在模型膜中观察到的相似。氘代神经组织中胆碱头部基团的自旋晶格弛豫时间与在模型膜中观察到的无法区分。这些结果支持了这样的提议,即神经组织中大量含胆碱脂质的胆碱头部基团的构象和运动动力学与模型膜中的相似。生物合成氘代的脑髓鞘和脑微粒体的光谱表现出相似的四极分裂。由于这些膜的蛋白质含量有显著差异,这些结果表明膜蛋白与含胆碱膜脂质的胆碱头部基团之间不存在强烈的极性相互作用。完整的氘代心脏和肺的光谱表现出线宽较宽和一系列四极分裂。由于这些组织的异质性,解释起来很困难。然而,未表明蛋白质对脂质头部基团有强烈的有序排列作用。

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