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大肠杆菌冷冻断裂包膜脂质相变的影响

Effects of lipid phase transition of the freeze-cleaved envelope of Escherichia coli.

作者信息

Bayer M E, Dolack M, Houser E

出版信息

J Bacteriol. 1977 Mar;129(3):1563-73. doi: 10.1128/jb.129.3.1563-1573.1977.

Abstract

We studied the fine structure of the envelope of Escherichia coli auxotroph K1060 after the cells were grown in the presence of one of the following fatty acids; oleic, palmitelaidic, or elidic acid. The cells were freeze-fractured after exposure to temperatures above and below the lipid phase transition range. As judged by freeze-etching methods, we observed that below the transition range the fracture plane of the inner membrane showed the typical aggregation of intramembranous particles (IMP) and concomitant development of areas devoid of IMP. In these areas we found a regular arrangement of equally spaced ridges, often intersected at 90 degrees by arrays of similar ridges. The ridges were composed of spherical particles measuring 4 to 5 nm in diameter. Formation and melting of these arrays took place within 15 to 30s after temperature shift-down or shift-up, respectively. Fixation in glutaraldehyde prevented these changes. The outer-membrane fracture plane revealed ordered areas to a lesser degree; these were discernible only by the regular arrangement of the IMP of the concave fracture plane. We interpret the data by suggesting that the pattern of ridges in E. coli K1060 is analogous to the band patterns described for artificial liposomes, and that the particles, possibly proteins, are lined up or extruded along the ridges during membrane lipid crystallization.

摘要

我们研究了大肠杆菌营养缺陷型K1060在以下脂肪酸之一(油酸、棕榈烯酸或反油酸)存在的情况下生长后其包膜的精细结构。细胞在暴露于高于和低于脂质相变范围的温度后进行冷冻断裂。通过冷冻蚀刻方法判断,我们观察到在相变范围以下,内膜的断裂平面显示出典型的膜内颗粒(IMP)聚集以及不含IMP区域的相应发展。在这些区域,我们发现了等间距脊的规则排列,这些脊通常被类似脊的阵列以90度相交。这些脊由直径为4至5纳米的球形颗粒组成。这些阵列的形成和融化分别在温度下降或上升后的15至30秒内发生。用戊二醛固定可防止这些变化。外膜断裂平面显示出的有序区域程度较低;只有通过凹面断裂平面上IMP的规则排列才能辨别。我们对数据的解释是,大肠杆菌K1060中脊的模式类似于人工脂质体中描述的带状模式,并且在膜脂质结晶过程中,这些颗粒(可能是蛋白质)沿着脊排列或挤出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4556/235136/33f160dfe052/jbacter00310-0406-a.jpg

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