Chin C C, Anderson P M, Wold F
J Biol Chem. 1983 Jan 10;258(1):276-82.
The amino acid sequence of the enzyme cyanase (cyanate hydrolase) from Escherichia coli has been determined by automatic Edman degradation of the intact protein and of its component peptides. The primary peptides used in the sequencing were produced by cyanogen bromide cleavage at the methionine residues, yielding 4 peptides plus free homoserine from the NH2-terminal methionine, and by trypsin cleavage at the 7 arginine residues after acetylation of the lysines. Secondary peptides required for overlaps and COOH-terminal sequences were produced by chymotrypsin or clostripain cleavage of some of the larger peptides. The complete sequence of the cyanase subunit consists of 156 amino acid residues (Mr 16,350). Based on the observation that the cysteine-containing peptide is obtained as a disulfide-linked dimer, it is proposed that the covalent structure of cyanase is made up of two subunits linked by a disulfide bond between the single cystine residue in each subunit. The native enzyme (Mr 150,000) then appears to be a complex of four or five such subunit dimers.
通过对完整蛋白质及其组成肽段进行自动埃德曼降解,已确定了来自大肠杆菌的氰酸酶(氰酸水解酶)的氨基酸序列。测序中使用的主要肽段是通过在甲硫氨酸残基处用溴化氰裂解产生的,从氨基末端甲硫氨酸产生4个肽段加游离高丝氨酸,以及在赖氨酸乙酰化后通过胰蛋白酶在7个精氨酸残基处裂解产生的。一些较大肽段通过胰凝乳蛋白酶或梭菌蛋白酶裂解产生重叠和羧基末端序列所需的二级肽段。氰酸酶亚基的完整序列由156个氨基酸残基组成(Mr 16,350)。基于含半胱氨酸的肽段是以二硫键连接的二聚体形式获得的这一观察结果,有人提出氰酸酶的共价结构由两个亚基组成,每个亚基中的单个胱氨酸残基之间通过二硫键相连。天然酶(Mr 150,000)似乎是四个或五个这样的亚基二聚体的复合物。