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嗜热脂肪芽孢杆菌中环境温度、细胞生长与膜脂流动性及物理状态之间的关系。

The relationship between environmental temperature, cell growth and the fluidity and physical state of the membrane lipids in Bacillus stearothermophilus.

作者信息

McElhaney R N, Souza K A

出版信息

Biochim Biophys Acta. 1976 Sep 7;443(3):348-59. doi: 10.1016/0005-2736(76)90455-7.

Abstract

A definite and characteristic relationship exists between growth temperature, fatty acid composition and the fluidity and physical state of the membrane lipids in wild type Bacillus stearothermophilus. As the environmental temperature is increased, the proportion of saturated fatty acids found in the membrane lipids is also markedly increased with a concomitant decrease in the proportion of unsaturated and branched chain fatty acids. The temperature range over which the gel to liquid-crystalline membrane lipid phase transition occurs is thereby shifted such that the upper boundary of this transition always lies near (and usually below) the temperature of growth. This organism thus possesses an effective and sensitive homeoviscous adaptation mechanism which maintains a relatively constant degree of membrane lipid fluidity over a wide range of environmental temperatures. A mutant of B. stearothermophilus which has lost the ability to increase the proportion of relatively high melting fatty acids in the membrane lipids, and thereby increase the phase transition temperature in response to increases in environmental temperature, is also unable to grow at higher temperatures. An effective homeoviscous regulatory mechanism thus appears to extend the growth temperature range of the wild type organism and may be an essential feature of adaptation to temperature extremes. Over most of their growth temperature ranges the membrane lipids of wild type and temperature-sensitive B. stearothermophilus cells exist entirely or nearly entirely in the liquid-crystalline state. Also, the temperature-sensitive mutant is capable of growth at temperatures well above those at which the membrane lipid gel to liquid-crystalline phase transition is completed. Therefore, although other evidence suggests the existence of an upper limit on the degree of membrane fluidity compatible with cell growth, the phase transition is completed. Therefore, although other evidence suggests the existence of an upper limit on the degree of membrane fluidity compatible with cell growth, the phase transition upper boundary itself does not directly determine the maximum growth temperature of this organism. Similarly, the lower boundary does not determine the minimum growth temperature, since cell growth ceases at a temperature at which most of the membrane lipid still exists in a fluid state. These observations do not support the suggestion made in an earlier study, which utilized electron spin resonance spectroscopy to monitor membrane lipid lateral phase separations, that the minimum and maximum growth temperatures of this organism might directly be determined by the solid-fluid membrane lipid phase transition boundaries. Evidence is presented here that the electron spin resonance techniques used previously did not in fact detect the gel to liquid-crystalline phase transition of the bulk membrane lipids, which, however, can be reliably measured by differential thermal analysis.

摘要

在嗜热脂肪芽孢杆菌野生型中,生长温度、脂肪酸组成与膜脂的流动性及物理状态之间存在明确且独特的关系。随着环境温度升高,膜脂中饱和脂肪酸的比例也显著增加,同时不饱和脂肪酸和支链脂肪酸的比例相应降低。由此,凝胶态至液晶态的膜脂相变发生的温度范围发生偏移,使得该相变的上限始终接近(通常低于)生长温度。因此,这种微生物拥有一种有效且灵敏的同黏性适应机制,能在广泛的环境温度范围内维持膜脂流动性的相对恒定程度。嗜热脂肪芽孢杆菌的一个突变体已丧失在膜脂中增加相对高熔点脂肪酸比例的能力,进而无法在环境温度升高时提高相变温度,它也无法在较高温度下生长。因此,一种有效的同黏性调节机制似乎扩展了野生型生物体的生长温度范围,并且可能是适应极端温度的一个基本特征。在其大部分生长温度范围内,野生型和温度敏感型嗜热脂肪芽孢杆菌细胞的膜脂完全或几乎完全处于液晶态。此外,温度敏感型突变体能够在远高于膜脂凝胶态至液晶态相变完成温度的条件下生长。所以,尽管其他证据表明与细胞生长相容的膜脂流动性程度存在上限,但相变仍会完成。因此,尽管其他证据表明与细胞生长相容的膜脂流动性程度存在上限,但相变上限本身并不直接决定该生物体的最高生长温度。同样,下限也不决定最低生长温度,因为在大多数膜脂仍处于流体状态的温度下,细胞生长就已停止。这些观察结果不支持早期一项研究中的观点,该研究利用电子自旋共振光谱监测膜脂横向相分离,认为该生物体的最低和最高生长温度可能直接由固态 - 流体膜脂相变边界决定。此处提供的证据表明,先前使用的电子自旋共振技术实际上并未检测到整体膜脂的凝胶态至液晶态相变,不过,这种相变可以通过差示热分析可靠地测量。

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