van Alphen L, van Alphen W, Verkleij A, Lugtenberg B
Biochim Biophys Acta. 1979 Sep 21;556(2):233-43. doi: 10.1016/0005-2736(79)90045-2.
The hypothesis that intramembraneous particles, observed in the outer membrane of Escherichia coli by freeze-fracture electron microscopy, are the morphological representation of aqueous pores, was tested. A mutant which is deficient in five major outer membrane proteins, b, c, d, e and the phage lambda receptor protein, contains a largely decreased number of intramembraneous particles and also shows a greatly decreased rate of uptake of several solutes. In derivatives of this strain which contain only one of these proteins in large amounts a strong decrease of the number of intramembraneous particles is observed, which is accompanied by a complete restoration of the rate of uptake of those solutes which use pores in which the protein in question is involved. The results provide strong evidence for the notion that an individual pore contains only one protein species, a property which has been found earlier for individual particles. The observed correlation between particles and equeous pores strongly supports the hypothesis that the particles are the morphological representation of pores. Implications of this hypothesis for the structure of the particles are discussed.
通过冷冻断裂电子显微镜在大肠杆菌外膜中观察到的膜内颗粒是水孔的形态学表现这一假说得到了验证。一种缺乏五种主要外膜蛋白(b、c、d、e)和噬菌体λ受体蛋白的突变体,其膜内颗粒数量大幅减少,同时几种溶质的摄取速率也大幅降低。在该菌株的衍生物中,大量只含有这些蛋白中的一种,观察到膜内颗粒数量大幅减少,同时伴随着那些利用与该蛋白相关孔道的溶质摄取速率的完全恢复。这些结果为单个孔道仅包含一种蛋白质这一观点提供了有力证据,这一特性此前已在单个颗粒中发现。观察到的颗粒与水孔之间的相关性有力地支持了颗粒是孔道的形态学表现这一假说。讨论了这一假说对颗粒结构的影响。