Saeki Y, Ito S, Shizuta Y, Hayaishi O, Kagamiyama H, Wada H
J Biol Chem. 1977 Apr 10;252(7):2206-8.
The molecule weight of the biodegradative threonine deaminase from Escherichia coli was determined to be approximately 147,000 by sedimentation equilibrium ultracentrifugation. Similar experiments using 5 M guanidinium chloride gave a value of 39,000 for the molecular weight of the enzyme subunit. On sodium dodecyl sulfate-gel electrophoresis the enzyme also dissociated into a single subunit with an estimated molecular weight of 38,000. The NH2 terminus of the enzyme was determined to be methionine by the dinitrophenylation procedure. Quantitative analysis revealed that 3.6 mol of methionine were detected per 147,000 g of enzyme. The selective tritium labeling method established alanine as the COOH-terminal residue. The sequence of residues at the NH2 terminus, determined using an automated sequence analyzer, was: (formula: see text). The fact that a single amino acid was released at each degradation step in the above experiment strongly suggests that the subunits in the enzyme contain the same amino acid sequence. Therefore, the native enzyme with a molecular weight of 147,000 appears to be composed of four identical polypeptide subunits.
通过沉降平衡超速离心法测定,来自大肠杆菌的生物降解型苏氨酸脱氨酶的分子量约为147,000。使用5 M氯化胍进行的类似实验得出该酶亚基的分子量为39,000。在十二烷基硫酸钠 - 凝胶电泳中,该酶也解离为一个单一亚基,估计分子量为38,000。通过二硝基苯基化程序确定该酶的NH2末端为甲硫氨酸。定量分析显示,每147,000 g酶中检测到3.6摩尔甲硫氨酸。选择性氚标记法确定丙氨酸为COOH末端残基。使用自动序列分析仪确定的NH2末端残基序列为:(分子式:见正文)。上述实验中每个降解步骤仅释放一个氨基酸这一事实强烈表明该酶中的亚基包含相同的氨基酸序列。因此,分子量为147,000的天然酶似乎由四个相同的多肽亚基组成。