Kwiatkowski B, Boschek B, Thiele H, Stirm S
J Virol. 1983 Jan;45(1):367-74. doi: 10.1128/JVI.45.1.367-374.1983.
For Escherichia coli Bos12 (O16:K92:H-), a bacteriophage (phi 92) has been isolated which carries a depolymerase active on the K92 capsular polysaccharide. As seen under the electron microscope, phi 92 belongs to Bradley's morphology group A and is different from the phage phi 1.2 previously described (Kwiatkowski et al., J. Virol. 43:697-704, 1982), which grows on E. coli K235 (O1:K1:H-), depolymerizes colominic acid, and belongs to morphology group C. The specificity of the phi 1.2- and phi 92-associated endo-N-acetylneuraminidases has been studied with respect to the following substrates (all alkali treated, and where NeuNAc represents N-acetylneuraminic acid): (i) [-alpha-NeuNAc-(2 leads to 8)-]n (colominic acid), (ii) [-alpha-NeuNAc-(2 leads to 8)-alpha-NeuNAc-(2 leads to 9)-]n (E. coli K92 polysaccharide), and (iii) [-alpha-NeuNAc-(2 leads to 9)-]n (Neisseria meningitidis type C capsular polysaccharide). The increase in periodate consumption of these glycans upon incubation with purified phi 1.2 or phi 92 particles was measured, and the split products obtained from all substrates after exhaustive degradation were analyzed by gel chromatography. It was found that the Neisseria polysaccharide is not appreciably affected by either virus enzyme and that phi 1.2 only depolymerizes a small fraction of the K92 glycan. Colominic acid, however, is completely degraded by both agents, phi 92 yielding smaller fragments (one to six NeuNAc residues) than phi 1.2 (two to seven). Phage phi 92 additionally depolymerizes the K92 glycan, essentially to oligosaccharides of two, four, and six residues. The size distribution of these K92 oligosaccharides indicates that the phi 92 enzyme predominantly cleaves the alpha(2 leads to 8) linkages in this polymer.
对于大肠杆菌Bos12(O16:K92:H-),已分离出一种噬菌体(phi 92),它携带一种对K92荚膜多糖具有活性的解聚酶。在电子显微镜下观察,phi 92属于布拉德利形态学A组,与先前描述的噬菌体phi 1.2不同(Kwiatkowski等人,《病毒学杂志》43:697 - 704,1982),后者在大肠杆菌K235(O1:K1:H-)上生长,使大肠菌素酸解聚,属于形态学C组。已针对以下底物(均经碱处理,其中NeuNAc代表N - 乙酰神经氨酸)研究了与phi 1.2和phi 92相关的内切N - 乙酰神经氨酸酶的特异性:(i)[-α-NeuNAc-(2→8)-]n(大肠菌素酸),(ii)[-α-NeuNAc-(2→8)-α-NeuNAc-(2→9)-]n(大肠杆菌K92多糖),以及(iii)[-α-NeuNAc-(2→9)-]n(C群脑膜炎奈瑟菌荚膜多糖)。测定了这些聚糖与纯化的phi 1.2或phi 92颗粒孵育后高碘酸盐消耗的增加,并通过凝胶色谱分析了彻底降解后从所有底物获得的裂解产物。发现奈瑟菌多糖不受任何一种病毒酶的明显影响,并且phi 1.2仅使一小部分K92聚糖解聚。然而,大肠菌素酸被这两种试剂完全降解,phi 92产生的片段(一至六个NeuNAc残基)比phi 1.2(二至七个)小。噬菌体phi 92还能使K92聚糖解聚,基本上形成二、四和六个残基的寡糖。这些K92寡糖的大小分布表明,phi 92酶主要切割该聚合物中的α(2→8)键。