Heller K, Braun V
J Bacteriol. 1979 Jul;139(1):32-8. doi: 10.1128/jb.139.1.32-38.1979.
A dual specificity for phage T5 adsorption to Escherichia coli cells is shown. The tail fiber-containing phages T5(+) and mutant hd-3 adsorbed rapidly to E. coli F (1.2 x 10(-9) ml min(-1)), whereas the adsorption rate of the tail fiber-less mutants hd-1, hd-2, and hd-4 was low (7 x 10(-11) ml min(-1)). The differences in adsorption rates were due to the particular lipopolysaccharide structure of E. coli F. Phage T4-resistant mutants of E. coli F with an altered lipopolysaccharide structure exhibited similar low adsorption for all phage strains with and without tail fibers. The same held true for E. coli K-12 and B which also differ from E. coli F in their lipopolysaccharide structures. Only the tail fiber-containing phages reversibly bound to isolated lipopolysaccharides of E. coli F. Infection by all phage strains strictly depended on the tonA-coded protein in the outer membrane of E. coli. We assume that the reversible preadsorption by the tail fibers to lipopolysaccharide accelerates infection which occurs via the highly specific irreversible binding of the phage tail to the tonA-coded protein receptor. The difference between rapid and slow adsorption was also revealed by the competition between ferrichrome and T5 for binding to their common tonA-coded receptor in tonB strains of E. coli. Whereas binding of T5(+) to E. coli K-12 and of the tail-fiber-less mutant hd-2 to E. coli F and K-12 was inhibited 50% by about 0.01 muM ferrichrome, adsorption of T5 to E. coli F was inhibited only 40% by even 1,000-fold higher ferrichrome concentrations.
研究表明噬菌体T5对大肠杆菌细胞的吸附具有双重特异性。含尾丝的噬菌体T5(+)和突变体hd - 3能快速吸附到大肠杆菌F上(1.2×10⁻⁹毫升·分钟⁻¹),而无尾丝的突变体hd - 1、hd - 2和hd - 4的吸附速率较低(7×10⁻¹¹毫升·分钟⁻¹)。吸附速率的差异是由于大肠杆菌F特殊的脂多糖结构。脂多糖结构改变的大肠杆菌F的噬菌体T4抗性突变体对所有有尾丝和无尾丝的噬菌体菌株都表现出相似的低吸附率。大肠杆菌K - 12和B也是如此,它们在脂多糖结构上也与大肠杆菌F不同。只有含尾丝的噬菌体能与大肠杆菌F的分离脂多糖可逆结合。所有噬菌体菌株的感染都严格依赖于大肠杆菌外膜中tonA编码的蛋白质。我们推测尾丝与脂多糖的可逆预吸附加速了感染,感染是通过噬菌体尾部与tonA编码的蛋白质受体的高度特异性不可逆结合发生的。在大肠杆菌tonB菌株中,高铁色素与T5竞争结合它们共同的tonA编码受体,这也揭示了快速吸附和缓慢吸附之间的差异。虽然约0.01μM的高铁色素能使T5(+)对大肠杆菌K - 12以及无尾丝突变体hd - 2对大肠杆菌F和K - 12的结合被抑制50%,但即使高铁色素浓度高出1000倍,T5对大肠杆菌F的吸附也仅被抑制40%。