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粗糙脉孢菌的糖原磷酸化酶:高比活性非磷酸化形式的纯化

Glycogen phosphorylase from Neurospora crassa: purification of a high-specific-activity, non-phosphorylated form.

作者信息

Cuppoletti J, Segel I H

出版信息

J Bacteriol. 1979 Aug;139(2):411-7. doi: 10.1128/jb.139.2.411-417.1979.

Abstract

A highly active glycogen phosphorylase was purified from Neurospora crassa by polyethylene glycol fractionation at pH 6.16 combined with standard techniques (chromatography and salt fractionation). The final preparation had a specific activity of 65 +/- 5 U/mg of protein (synthetic direction, pH 6.1, 30 degrees C) and was homogeneous by the criteria of gel electrophoresis, amino-terminal analysis, gel filtration, and double immunodiffusion in two dimensions. The enzyme had a native molecular weight of 180,000 +/- 10,000 (by calibrated gel filtration and gel electrophoresis) and a subunit molecular weight of 90,000 +/- 5,000 (by sodium dodecyl sulfate-polyacrylamide gel electrophoresis). Each subunit contained one molecule of pyridoxal phosphate. No phosphoserine or phosphothreonine was detected by amino acid analysis optimized for phosphoamino acid detection. The enzyme isolated from cells grown on high-specific-activity 32Pi (as sole source of phosphorus) contained one atom of 32P per subunit. All the radioactivity was removed by procedures that removed pyridoxal phosphate. Thus, the enzyme could not be classified as an a type (phosphorylated, active in the absence of a cofactor) or as a b type (non-phosphorylated, inactive in the absence of a cofactor). The level of phosphorylase was markedly increased in mycelium taken from older cultures in which the carbon source (glucose or sucrose) had been depleted. The polyethylene glycol fractionation scheme applied at pH 7.5 to mycelial extracts of younger cultures (taken before depletion of the sugar) resulted in co-purification of glycogen phosphorylase and glycogen synthetase.

摘要

通过在pH 6.16条件下进行聚乙二醇分级分离,并结合标准技术(色谱法和盐分级分离),从粗糙脉孢菌中纯化出一种高活性糖原磷酸化酶。最终制备物的比活性为65±5 U/mg蛋白质(合成方向,pH 6.1,30℃),根据凝胶电泳、氨基末端分析、凝胶过滤和二维双向免疫扩散的标准,该酶是均一的。该酶的天然分子量为180,000±10,000(通过校准凝胶过滤和凝胶电泳),亚基分子量为90,000±5,000(通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳)。每个亚基含有一分子磷酸吡哆醛。通过针对磷酸氨基酸检测优化的氨基酸分析未检测到磷酸丝氨酸或磷酸苏氨酸。从以高比活32P(作为唯一磷源)生长的细胞中分离出的酶,每个亚基含有一个32P原子。所有放射性都通过去除磷酸吡哆醛的程序去除。因此,该酶不能归类为a型(磷酸化,在无辅因子时具有活性)或b型(非磷酸化,在无辅因子时无活性)。在取自较老培养物(其中碳源(葡萄糖或蔗糖)已耗尽)的菌丝体中,磷酸化酶水平显著增加。在pH 7.5条件下应用于较年轻培养物(在糖耗尽之前取样)的菌丝体提取物的聚乙二醇分级分离方案,导致糖原磷酸化酶和糖原合成酶共纯化。

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