Farnsworth C C, Dratz E A
Biochim Biophys Acta. 1976 Sep 7;443(3):556-70. doi: 10.1016/0005-2736(76)90473-9.
Highly purified bovine rod outer segment membranes show loss of structural integrity under an air atmosphere. Obvious ultrastructural changes are preceded by increases in absorbance below 400 nm. These changes are inhibited by Ar or N2 atmospheres and appear to be due primarily to oxidative damage to the polyunsaturated fatty acids of the membrane lipids. Loss of polyunsaturated fatty acids, formation of malonaldehyde and fluorescent products characteristic of lipid oxidation accompany the spectral alterations. The elevated ultraviolet absorbance can largely be removed from the membranes by gentle extraction of the lipids using phospholipase C and hexane without changing the visible absorbance of rhodopsin. We have found a large seasonal variation in the endogenous level of alpha-tocopherol (vitamin E) in the bovine rod outer segment preparations. For much of the year we find that the rod outer segment membranes contain higher levels of alpha-tocopherol than have been previously reported in biological membranes. Rod outer segments which are low in endogenous tocopherol can be protected from oxygen damage by adding exogenous tocopherol. The rod outer segments are extremely susceptible to oxygen damage due to the unusually high content of polyunsaturated fatty acids in the membrane lipids. The presence of tocopherol inhibits oxygen damage but does not eliminate it. The tocopherol in the rod outer segments is consumed in air, thus complete protection from peroxidation in vitro requires an inert atmosphere as well as high levels of tocopherol. This work suggests that extensive precautions against oxidative degradation should also be employed in studies of other membrane systems where important deleterious effects of oxygen may be less obvious.
高度纯化的牛视杆细胞外段膜在空气氛围下会出现结构完整性丧失的情况。在400nm以下吸光度增加之前会出现明显的超微结构变化。这些变化在氩气或氮气氛围中受到抑制,似乎主要是由于膜脂中多不饱和脂肪酸的氧化损伤所致。多不饱和脂肪酸的损失、丙二醛的形成以及脂质氧化特有的荧光产物伴随着光谱变化。通过使用磷脂酶C和己烷温和提取脂质,可在很大程度上去除膜中升高的紫外线吸光度,而不会改变视紫红质的可见吸光度。我们发现牛视杆细胞外段制剂中α-生育酚(维生素E)的内源性水平存在很大的季节性变化。在一年中的大部分时间里,我们发现视杆细胞外段膜中α-生育酚的含量高于先前在生物膜中报道的水平。内源性生育酚含量低的视杆细胞外段可通过添加外源性生育酚来防止氧气损伤。视杆细胞外段由于膜脂中多不饱和脂肪酸含量异常高,极易受到氧气损伤。生育酚的存在可抑制氧气损伤,但不能消除它。视杆细胞外段中的生育酚在空气中会被消耗,因此在体外完全防止过氧化需要惰性气氛以及高水平的生育酚。这项工作表明,在研究其他膜系统时,也应采取广泛的预防措施来防止氧化降解,在这些系统中,氧气的重要有害影响可能不太明显。