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首页> 外文期刊>The biochemical journal >Studies of polysaccharide fractions from the lipopolysaccharide of Pseudomonas aeruginosa N.C.T.C. 1999
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Studies of polysaccharide fractions from the lipopolysaccharide of Pseudomonas aeruginosa N.C.T.C. 1999

机译:铜绿假单胞菌N.C.T.C.脂多糖的多糖组分研究1999年

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pTwo polymeric water-soluble fractions were isolated by gel filtration after mild acid hydrolysis of the lipopolysaccharide from iPseudomonas aeruginosa/i N.C.T.C. 1999. The fraction of higher molecular weight retained the O-antigenic specificity of the lipopolysaccharide and may be ‘side-chain’ material. This fraction was rich in N (about 10%) and gave several basic amino compounds on acid hydrolysis; fucosamine (at least 2.8% w/w) was the only specifc component identified. The fraction of lower molecular weight was a phosphorylated polysaccharide apparently corresponding to ‘core’ material. The major components of this fraction and their approximate molar proportions were: glucose (3-4); rhamnose (1); heptose (2); 3-deoxy-2-octulonic acid (1); galactosamine (1); alanine (1-1.5); phosphorus (6-7). In the intact lipopolysaccharide this fraction was probably linked to lipid A via a second residue of 3-deoxy-2-octulonic acid, and probably also contained additional phosphate residues and ethanolamine. The residues of 3-deoxy-2-octulonic acid were apparently substituted in the C-4 or C-5 position, and the phosphorylated heptose residues in the C-3 position. The rhamnose was mainly 2-substituted, though a little 3-substitution was detected. The glucose residues were either unsubstituted or 6-substituted. Four neutral oligosaccharides were produced by partial acid hydrolysis and were characterized by chemical, enzymic, chromatographic and mass-spectrometric methods of analysis. The structures assigned were: Glcip/iα1-6Glc; Glcip/iβ1-2Rha; Rhaip/iα1-6Glc; Glcip/iβ1-2Rhaip/iα1-6Glc. The galactosamine was substituted in the C-3 or C-4 position, the attachment of alanine was indicated, and evidence that the amino sugar linked the glucose-rhamnose region to the ‘inner core’ was obtained./p
机译:轻度酸水解铜绿假单胞菌N.C.T.C中的脂多糖后,通过凝胶过滤分离出两个聚合物水溶性级分。 1999。较高分子量的部分保留了脂多糖的O-抗原特异性,并且可能是“侧链”材料。该馏分富含N(约10%),并在酸水解后得到几种碱性氨基化合物。岩藻糖胺(至少2.8%w / w)是唯一确定的特定成分。较低分子量的部分是磷酸化的多糖,显然对应于“核心”物质。该馏分的主要成分及其近似摩尔比例为:葡萄糖(3-4);和鼠李糖(1);庚糖(2); 3-脱氧-2-辛酸(1);半乳糖胺(1);丙氨酸(1-1.5);磷(6-7)。在完整的脂多糖中,该馏分可能通过3-脱氧-2-辛酸的第二个残基与脂质A连接,并且可能还包含其他的磷酸残基和乙醇胺。 3-脱氧-2-辛酸的残基显然在C-4或C-5位被取代,磷酸化的庚糖残基在C-3位。鼠李糖主要被2-取代,尽管检测到少量3-取代。葡萄糖残基是未取代的或6-取代的。通过部分酸水解产生了四种中性寡糖,并通过化学,酶,色谱和质谱分析方法对其进行了表征。分配的结构为:Glc p 1 1-6 Glc。 Glc p β1-2Rha; Rha p α1-6Glc; Glc p β1-2Rha p α1-6Glc。半乳糖胺在C-3或C-4位置被取代,表明丙氨酸的附着,并获得了氨基糖将葡萄糖-鼠李糖区连接到“内核”的证据。

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