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用溴化氰裂解细菌鞭毛蛋白。蛋白质片段的化学和物理性质。

Cleavage of bacterial flagellin with cyanogen bromide. Chemical and physical properties of the protein fragments.

作者信息

Parish C R, Ada G L

出版信息

Biochem J. 1969 Jul;113(3):489-99. doi: 10.1042/bj1130489.

Abstract
  1. Flagellin, isolated from the flagella of Salmonella adelaide, was shown by various criteria to be a pure protein. It had a molecular weight of about 40000 and contained three methionine, six tyrosine, 11 arginine and 25 lysine residues/mol., of which 11 of the lysine residues were present as in-N-methyl-lysine. 2. After treatment of flagellin with cyanogen bromide in formic acid, four main fragments (A, B, C and D) were obtained, with as many as six minor components that represented partial degradation products. The major fragments were estimated by amino acid analysis to have molecular weights of about 18000 for fragment A, 12000 for fragment B, 5500 for fragment C and 4500 for fragment D. Fragments A, B and D, but not fragment C, were recovered pure by gel chromatography as monitored by polyacrylamide-gel electrophoresis. 3. A complex between fragments C and D was also isolated (mol.wt. 10000) after limited oxidation of flagellin by chloramine-t before digestion by cyanogen bromide. After oxidation essentially only two fragments were released from flagellin by cyanogen bromide: the ;C,D' complex and a presumed ;AB' fragment. 4. The sum of the amino acid analyses of fragments A and B and the ;C,D' complex gave residue values that agreed well with the amino acid composition of native flagellin. 5. Fragments A and D contained tyrosine, and ten of the 11 in-N-methyl-lysine residues of the molecule were in fragment A. Reaction with [(125)I]iodide at small extents of substitution showed that, in flagellin, the tyrosine residue of fragment D was more readily substituted than those of fragment A. By contrast, in polymerized flagellin, the tyrosine residues of fragment A were more readily substituted. 6. Treatment of flagellin with carboxypeptidases A and B revealed the C-terminal sequence -Leu-Leu-Leu-Arg. Arginine and leucine were released by carboxypeptidase from the ;C,D' complex but not from fragment D, indicating that fragment C was C-terminal. 7. On the basis of the results from amino acid analysis, carboxypeptidase digestion, N-terminal analysis, iodination studies and polyacrylamide-gel electrophoresis, the sequence of fragments in flagellin was considered to be B-A-D-C; in the polymer, fragment A was exposed. It is suggested that methylation of the lysine residues occurred in the organism after flagellin had polymerized.
摘要
  1. 从阿德莱德沙门氏菌鞭毛中分离出的鞭毛蛋白,经多种标准鉴定为纯蛋白。其分子量约为40000,每摩尔含有3个甲硫氨酸、6个酪氨酸、11个精氨酸和25个赖氨酸残基,其中11个赖氨酸残基以N-甲基赖氨酸形式存在。2. 用溴化氰在甲酸中处理鞭毛蛋白后,得到四个主要片段(A、B、C和D),还有多达六个代表部分降解产物的次要成分。通过氨基酸分析估计,主要片段A的分子量约为18000,片段B为12000,片段C为5500,片段D为4500。通过聚丙烯酰胺凝胶电泳监测,片段A、B和D可通过凝胶色谱法纯回收,而片段C不能。3. 在溴化氰消化前用氯胺-T对鞭毛蛋白进行有限氧化后,还分离出了片段C和D的复合物(分子量10000)。氧化后,溴化氰从鞭毛蛋白中基本上只释放出两个片段:“C,D”复合物和一个假定的“AB”片段。4. 片段A和B以及“C,D”复合物的氨基酸分析总和给出的残基值与天然鞭毛蛋白的氨基酸组成非常吻合。5. 片段A和D含有酪氨酸,分子中11个N-甲基赖氨酸残基中的10个在片段A中。在低取代度下与[(125)I]碘化物反应表明,在鞭毛蛋白中,片段D的酪氨酸残基比片段A的更容易被取代。相比之下,在聚合鞭毛蛋白中,片段A的酪氨酸残基更容易被取代。6. 用羧肽酶A和B处理鞭毛蛋白,揭示了其C末端序列为-Leu-Leu-Leu-Arg。羧肽酶从“C,D”复合物中释放出精氨酸和亮氨酸,但从片段D中未释放,表明片段C是C末端。7. 根据氨基酸分析、羧肽酶消化、N末端分析、碘化研究和聚丙烯酰胺凝胶电泳的结果,鞭毛蛋白中片段的序列被认为是B-A-D-C;在聚合物中,片段A暴露在外。有人认为赖氨酸残基的甲基化发生在鞭毛蛋白聚合后的生物体中。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a16/1184691/6d9757ca1173/biochemj00699-0043-a.jpg

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