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从溶壁微球菌的中体膜囊泡中分离和鉴定一种甘露聚糖。

Isolation and characterization of a mannan from mesosomal membrane vesicles of Micrococcus lysodeikticus.

作者信息

Owen P, Salton M R

出版信息

Biochim Biophys Acta. 1975 Oct 6;406(2):214-34. doi: 10.1016/0005-2736(75)90006-1.

Abstract

The carbohydrate content of mesosomal membranes of Micrococcus lysodeikticus has been shown to be consistently higher (about four times) than that of corresponding plasma membrane preparations. Analysis of washed membrane fractions by gas-liquid chromatography indicated that mannose was the major neutral sugar of both types of membrane (accounting for 95 and 89%, respectively, of the mesosomal and plasma membrane carbohydrate). Small amounts of inositol, glucose and ribose were also detected. We have shown by polyacrylamide gel electrophoresis in sodium dodecylsulphate and by precipitation and agar gel diffusion experiments with concanavalin A that a mannan is the major carbohydrate component of both types of membrane. This polymer can be selectively released from mesosomal membranes by a simple procedure involving low ionic strength-shock and heating to 80 degrees C for 1 min, and purified by ultrafiltration and ethanol precipitation. The mannan contains mannose as the only neutral carbohydrate, is not phosphorylated and does not contain significant amounts of amino sugars or uronic acids. Agar gel electrophoresis experiments, however, indicate an anionic polymer whose acidic properties are eliminated upon mild base hydrolysis. Analysis of native mannan by infrared spectroscopy reveals absorption bands attributable to ester carbonyl groups and to carboxylate ions, consistent with the presence of succinyl residues in the polymer (Owen, P. and Salton, M.R.J. (1975) Biochem, Biophys. Res. Commun. 63, 875--800). A sedimentation coefficient of 1.39 S was obtained by analytical ultracentrifugation in 1.0 M NaCl and a value of one reducing equivalent per 50 mannose residues by reduction with NaB3H4. The polysaccharide was only slightly degraded (2%) by jack bean alpha-mannosidase and could precipitate 15 times its own weight of concanavalin A. The acidic polymers was also detected in the cell "periplasm" and was secreted from cells grown in defined media during the period of decelerating growth.

摘要

已证明,溶壁微球菌的中体膜的碳水化合物含量始终高于相应质膜制剂(约四倍)。通过气液色谱法对洗涤后的膜级分进行分析表明,甘露糖是两种膜类型的主要中性糖(分别占中体膜和质膜碳水化合物的95%和89%)。还检测到少量的肌醇、葡萄糖和核糖。我们通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳以及用伴刀豆球蛋白A进行沉淀和琼脂凝胶扩散实验表明,甘露聚糖是两种膜类型的主要碳水化合物成分。通过一个简单的程序,即低离子强度休克并加热至80℃ 1分钟,可从中体膜中选择性释放这种聚合物,并通过超滤和乙醇沉淀进行纯化。该甘露聚糖仅含甘露糖作为唯一的中性碳水化合物,未磷酸化,也不含大量的氨基糖或糖醛酸。然而,琼脂凝胶电泳实验表明存在一种阴离子聚合物,其酸性性质在温和碱水解后消失。通过红外光谱对天然甘露聚糖进行分析,发现有归因于酯羰基和羧酸根离子的吸收带,这与聚合物中存在琥珀酰残基一致(欧文,P.和索尔顿,M.R.J.(1975年)《生物化学与生物物理研究通讯》63卷,875 - 800页)。在1.0M氯化钠中通过分析超速离心获得沉降系数为1.39S,用NaB3H4还原时每50个甘露糖残基有一个还原当量。该多糖仅被刀豆α - 甘露糖苷酶轻微降解(2%),并且能沉淀其自身重量15倍的伴刀豆球蛋白A。在细胞“周质”中也检测到了这种酸性聚合物,并且在限定培养基中生长的细胞在生长减速期会分泌这种聚合物。

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