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四膜虫努力使所有膜之间的流动性相互关系保持恒定。电子显微镜证据。

Tetrahymena strives to maintain the fluidity interrelationships of all its membranes constant. Electron microscope evidence.

作者信息

Kitajima Y, Thompson G A

出版信息

J Cell Biol. 1977 Mar;72(3):744-55. doi: 10.1083/jcb.72.3.744.

Abstract

When cells of Tetrahymena pyriformis, strain NT-1, were chilled from their growth temperature of 39.5 degrees C to lower temperatures, the plasma membrane, outer alveolar, nuclear, outer mitochondrial, food vacuolar, and endoplasmic reticulum membranes each responded in a fashion quite characteristic of the membrane type. In most cases a distinctive rearrangement of intramembrane particles, as discerned by freeze-fracture electron microscopy, began abruptly at a definitive temperature. By comparing the freeze-fracture patterns of membranes in cells grown at 39.5, 27, and 15 degrees C, it was shown that the initial particle rearrangement in a given membrane always occurred at a fixed number of degrees below the growth temperature of the cell. Gradual chilling of a cell grown at constant temperature induced these membrane changes first in the outer alveolar membrane, then, in order of decreasing response to temperature, in the endoplasmic reticulum, outer mitochondrial membrane, nuclear envelope, and vacuolar membrane. The normally stable relationships between the physical properties of the several membrane types could in some cases be reversed, but only temporarily, by fatty acid supplementation or during the initial phases of acclimation to growth at a different temperature. The system provides a unique opportunity to study the effects of environmental change upon the physical properties of several functionally distinct but metabolically interrelated membranes within a single cell.

摘要

当梨形四膜虫NT-1株的细胞从其39.5摄氏度的生长温度冷却至更低温度时,质膜、外泡膜、核膜、外线粒体膜、食物泡膜和内质网膜各自以相当符合膜类型特征的方式做出反应。在大多数情况下,通过冷冻断裂电子显微镜观察到的膜内颗粒的独特重排,在一个确定的温度下突然开始。通过比较在39.5、27和15摄氏度下生长的细胞中膜的冷冻断裂模式,发现给定膜中的初始颗粒重排总是在低于细胞生长温度一定度数时发生。在恒温下生长的细胞逐渐冷却时,这些膜变化首先在外泡膜中出现,然后,按照对温度反应递减的顺序,在内质网、外线粒体膜、核膜和液泡膜中出现。在某些情况下,通过补充脂肪酸或在适应不同温度生长的初始阶段,几种膜类型的物理性质之间通常稳定的关系可能会被逆转,但只是暂时的。该系统提供了一个独特的机会来研究环境变化对单个细胞内几种功能不同但代谢相互关联的膜的物理性质的影响。

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Thermotropic lipid clustering in tetrahymena membranes.嗜热四膜虫膜中的热致脂质聚集
Biochemistry. 1975 Aug 26;14(17):3730-5. doi: 10.1021/bi00688a002.

本文引用的文献

9
Membranes in Tetrahymena. I. The cortical pattern.四膜虫的膜。I. 皮层模式。
J Ultrastruct Res. 1972 Nov;41(3):258-69. doi: 10.1016/s0022-5320(72)90068-8.

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