Barron A, May G, Bremer E, Villarejo M
J Bacteriol. 1986 Aug;167(2):433-8. doi: 10.1128/jb.167.2.433-438.1986.
Adaptation to osmotic stress alters the amounts of several specific proteins in the Escherichia coli K-12 envelope. The most striking feature of the response to elevated osmolarity was the strong induction of a periplasmic protein with an Mr of 31,000. This protein was absent in mutants with lambda plac Mu insertions in an osmotically inducible locus mapping near 58 min. The insertions are likely to be in proU, a locus encoding a transport activity for the osmoprotectants glycine betaine and proline. Factors affecting the extent of proU induction were identified by direct examination of periplasmic proteins on sodium dodecyl sulfate gels and by measuring beta-galactosidase activity from proU-lac fusions. Expression was stimulated by increasing additions of salt or sucrose to minimal medium, up to a maximum at 0.5 M NaCl. Exogenous glycine betaine acted as an osmoregulatory signal; its addition to the high-osmolarity medium substantially repressed the expression of the 31,000-dalton periplasmic protein and the proU-lac+ fusions. Elevated osmolarity also caused the appearance of a second periplasmic protein (Mr = 16,000), and severe reduction in the amounts of two others. In the outer membrane, the well-characterized repression of OmpF by high osmolarity was observed and was reversed by glycine betaine. Additional changes in membrane composition were also responsive to glycine betaine regulation.
对渗透胁迫的适应会改变大肠杆菌K-12包膜中几种特定蛋白质的含量。对渗透压升高的反应最显著的特征是强烈诱导出一种分子量为31,000的周质蛋白。在58分钟附近的一个渗透诱导位点插入λplac Mu的突变体中没有这种蛋白质。这些插入可能发生在proU基因座,该基因座编码渗透保护剂甘氨酸甜菜碱和脯氨酸的转运活性。通过直接检测十二烷基硫酸钠凝胶上的周质蛋白以及测量proU-lac融合体的β-半乳糖苷酶活性,确定了影响proU诱导程度的因素。向基本培养基中增加盐或蔗糖的添加量可刺激表达,在0.5 M NaCl时达到最大值。外源性甘氨酸甜菜碱作为一种渗透调节信号;将其添加到高渗培养基中可显著抑制31,000道尔顿周质蛋白和proU-lac+融合体的表达。渗透压升高还导致第二种周质蛋白(分子量 = 16,000)出现,另外两种周质蛋白的含量则严重减少。在外膜中,观察到高渗透压对OmpF的典型抑制作用,而甘氨酸甜菜碱可使其逆转。膜组成的其他变化也对甘氨酸甜菜碱调节有反应。