Kenney W C, Edmondson D E, Singer T P, Steenkamp D J, Schabort J C
Biochemistry. 1976 Nov 2;15(22):4931-5. doi: 10.1021/bi00667a028.
Beta-Cyclopiazonate oxidocyclase from Penicillium cyclopium has been previously shown to contain flavin dinucleotide in covalent linkage to the protein. In the present study, a pure flavin mononucleotide peptide was isolated from the enzyme by tryptic-chymotryptic digestion, chromatography on Florisil and on diethylaminoethylcellulose, and hydrolysis with nucleotide pyrophosphatase. The flavin peptide contains 9 amino acids, including histidine in linkage to the flavin, and Asx as the N-terminal residue. The fluorescence of the flavin in the FMN peptide is profoundly quenched even at pH 3.2, where protonation of the imidazole prevents queching of the flavin fluorescence by histidine. This quenching appears to be due to interaction of the flavin with a tryptophan residue, as the quenching is abolished by oxidation of the tryptophan with performic acid. Similarly, the fluorescence of the tryptophan in the peptide is quenched, presumably by the flavin. The flavin of beta-cyclopiazonate oxidocylcase is attached, by the way of the 8alpha-methylene group, to the imidazole ring of a histidine. The aminoacylflavin isolated from the enzyme is identical in the pKa of its imidazole group, in reduction by NaBH4, and in other properties with synthetic 8alpha-(N1-histidyl)riboflavin. The pKa of the histidylriboflavin component of the oxidocyclase is 5.2 before and 5.0 after acid modification of the ribityl chain, as is found in the synthetic derivative. It is concluded that the enzyme contains the N1 isomer of histidylriboflavin and that acid hydrolysis of flavin peptides isolated from the oxidocyclase, while liberating histidylriboflavin, also causes acid modification of the ribityl chain of the flavin moiety.
以前已表明,来自环青霉的β-环匹阿尼酸氧化环化酶含有与蛋白质共价连接的黄素二核苷酸。在本研究中,通过胰蛋白酶-糜蛋白酶消化、在弗罗里硅土和二乙氨基乙基纤维素上进行色谱分离以及用核苷酸焦磷酸酶水解,从该酶中分离出一种纯的黄素单核苷酸肽。该黄素肽含有9个氨基酸,包括与黄素相连的组氨酸,并且Asx作为N端残基。即使在pH 3.2时,FMN肽中黄素的荧光也被显著淬灭,在该pH值下咪唑的质子化可防止组氨酸对黄素荧光的淬灭。这种淬灭似乎是由于黄素与色氨酸残基相互作用所致,因为用过甲酸氧化色氨酸可消除淬灭。同样,肽中色氨酸的荧光也被淬灭,推测是被黄素淬灭。β-环匹阿尼酸氧化环化酶的黄素通过8α-亚甲基与组氨酸的咪唑环相连。从该酶中分离出的氨酰黄素在其咪唑基团的pKa、被硼氢化钠还原以及其他性质方面与合成的8α-(N1-组氨酰)核黄素相同。如在合成衍生物中所发现的那样,氧化环化酶的组氨酰核黄素成分在核糖醇链酸修饰之前的pKa为5.2,之后为5.0。得出的结论是,该酶含有组氨酰核黄素的N1异构体,并且从氧化环化酶中分离出的黄素肽的酸水解在释放组氨酰核黄素的同时,也会导致黄素部分的核糖醇链发生酸修饰。