Kang M S, Elango N, Mattia E, Au-Young J, Robbins P W, Cabib E
J Biol Chem. 1984 Dec 10;259(23):14966-72.
Chitin synthetase, in the zymogen form, was extracted with digitonin from a particulate fraction from Saccharomyces cerevisiae and converted into active form by treatment with immobilized trypsin. When the activated enzyme was incubated with UDP-GlcNAc and other components of an assay mixture, a chitin precipitate formed, trapping a large portion of the synthetase. The enzyme was easily extracted frm the chitin gel with a recovery of approximately 50% and an enrichment of approximately 100-fold. Further purification was obtained by repeating the chitin step. After polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate, the purified synthetase showed a major band corresponding to Mr 63,000, a weaker band at Mr 74,000, and some other minor bands. Under nondenaturing conditions, an Mr of 570,000 was calculated for the enzyme from Stokes radius and sedimentation coefficient determinations. After electrophoresis in a nondenaturing gel and incubation with the components of the standard assay, chitin was formed and precipitated in the gel, yielding an opaque band. Soluble oligosaccharides were not precursors for insoluble chitin, suggesting that synthesis of chitin chains takes place by a processive mechanism. N-Acetylglucosamine stimulated the purified synthetase only slightly and did not participate as a primer in the reaction. The same chain length, somewhat more than 100 units of GlcNAc, was determined in samples of chitin that had been synthesized either in vivo, or with a membrane preparation or with purified synthetase. These results suggest that chitin synthetase itself is capable both of initiating chitin chains without a primer and of determining their length.
几丁质合成酶以酶原形式,用洋地黄皂苷从酿酒酵母的颗粒部分提取出来,并通过固定化胰蛋白酶处理转化为活性形式。当将活化的酶与UDP-GlcNAc及测定混合物的其他成分一起温育时,形成了几丁质沉淀,捕获了大部分合成酶。该酶很容易从几丁质凝胶中提取出来,回收率约为50%,富集约100倍。通过重复几丁质步骤可实现进一步纯化。在十二烷基硫酸钠存在下进行聚丙烯酰胺凝胶电泳后,纯化的合成酶显示出一条对应于Mr 63,000的主要条带、一条Mr 74,000的较弱条带以及一些其他较小条带。在非变性条件下,根据斯托克斯半径和沉降系数测定计算该酶的Mr为570,000。在非变性凝胶中进行电泳并与标准测定的成分一起温育后,在凝胶中形成并沉淀了几丁质,产生一条不透明条带。可溶性寡糖不是不溶性几丁质的前体,这表明几丁质链的合成是通过一个连续的机制进行的。N-乙酰葡糖胺仅对纯化的合成酶有轻微刺激,且在反应中不作为引物参与。在体内、用膜制剂或用纯化的合成酶合成的几丁质样品中,测定到相同的链长,略多于100个GlcNAc单位。这些结果表明,几丁质合成酶本身既能在没有引物的情况下起始几丁质链,又能决定其长度。