Tarakhovskiĭ Iu S, Galushchenko I V, Boroviagin V L, Ritov V B, Komarov P G
Biokhimiia. 1979 May;44(5):897-902.
The dependence of the state of the hydrophobic zone of rabbit sarcoplasmic reticulum (SR) membranes on temperature of the membrane fragment suspension before rapid freezing was studied by the freeze fracturing technique. It was shown that within the temperature range of--15-- +37 degrees C the amount of intramembrane particles and their distribution in the membrane plane and between their convex and concave surfaces do not practically depend on the temperature of the SR membrane suspension. This is indicative of the lack of correlation between the physical state of the phospholipid matrix (gel -- liquid crystal) before freezing and the nature of the profile of the membrane hydrophobic zone revealed after fracturing. The disturbances in the protein -- lipid interactions in the membrane under the effects of mersalyl or aqueous solutions of diethyl ester followed by complete inactivation of Ca2+-dependent ATPase lead to a decrease in the amount of intramembrane particles, which is especially well-pronounced at 37 degrees and -15 degrees C.
采用冷冻断裂技术研究了兔肌浆网(SR)膜疏水区域的状态对快速冷冻前膜片段悬浮液温度的依赖性。结果表明,在-15至+37摄氏度的温度范围内,膜内颗粒的数量及其在膜平面以及凸面和凹面之间的分布实际上并不依赖于SR膜悬浮液的温度。这表明冷冻前磷脂基质的物理状态(凝胶-液晶)与断裂后揭示的膜疏水区域轮廓的性质之间缺乏相关性。在汞撒利或二乙酯水溶液的作用下,膜中蛋白质-脂质相互作用受到干扰,随后Ca2+依赖性ATP酶完全失活,导致膜内颗粒数量减少,这在37摄氏度和-15摄氏度时尤为明显。