Salimath P V, Tharanathan R N, Weckesser J, Mayer H
Eur J Biochem. 1984 Oct 15;144(2):227-32. doi: 10.1111/j.1432-1033.1984.tb08454.x.
The chemical structure of the polysaccharide moiety of the lipopolysaccharide Rhodopseudomonas sphaeroides ATCC 17023 was established. Mild acetic acid hydrolysis of isolated lipopolysaccharide, followed by preparative high-voltage paper electrophoresis afforded three oligosaccharides. They were characterized by chemical and physicochemical studies to be: GlcA(alpha 1----4)dOclA8P, Thr(6') GlcA(alpha 1----4)GlcA and GlcA(alpha 1----4)dOclA, where GlcA is D-glucuronic acid and dOc1A is 3-deoxy-D-manno-octulosonic acid. Carboxyl-reduction of the lipopolysaccharide followed by acid hydrolysis gave a trisaccharide: GlcA(alpha 1----4)Glc(alpha 1----4)Glc, showing the presence of three residues of glucuronic acids in the O-specific chain and indicating that only two of them are reducible by NaBH4. The linkage between the polysaccharide and lipid A was shown to be through a single 1,4-linked residue of dOc1A attached by a 2,6'-linkage to the lipid A moiety.
球形红假单胞菌ATCC 17023脂多糖的多糖部分的化学结构已确定。对分离得到的脂多糖进行温和的乙酸水解,然后进行制备型高压纸电泳,得到三种寡糖。通过化学和物理化学研究对它们进行了表征,结果如下:GlcA(α1→4)dOclA8P、Thr(6')GlcA(α1→4)GlcA和GlcA(α1→4)dOclA,其中GlcA是D-葡萄糖醛酸,dOc1A是3-脱氧-D-甘露糖辛酸。脂多糖经羧基还原后进行酸水解,得到一种三糖:GlcA(α1→4)Glc(α1→4)Glc,表明O-特异性链中存在三个葡萄糖醛酸残基,并且表明其中只有两个可被NaBH4还原。多糖与脂质A之间的连接显示是通过一个单一的1,4-连接的dOc1A残基,该残基通过2,6'-连接与脂质A部分相连。