Moore M A, Ahmed F, Dunlap R B
J Biol Chem. 1986 Sep 25;261(27):12745-9.
The formation of covalent binary complexes of thymidylate synthase and its nucleotide substrate dUMP, product dTMP, and inhibitor, 5-fluorodeoxyuridylate (FdUMP) was investigated using the trichloroacetic acid precipitation method. It was observed that, in addition to FdUMP, both dUMP and dTMP were capable of covalent interactions with the enzyme in the absence of added folates. The presence of folate, dihydrofolate, or tetrahydrofolate (H4folate) was found to produce substantial enhancements in the covalent binding of both FdUMP and dUMP to the enzyme with H4folate being the most effective agent. Further, covalent binary complexes of the enzyme with the three radiolabeled nucleotides were isolated by trichloroacetic acid precipitation and subjected to CNBr cleavage. The active-site CNBr peptide was isolated by reverse phase high performance liquid chromatography, and the first five N-terminal amino acid residues were sequenced by the dansyl-Edman procedure. Each active site peptide obtained from the covalent binary complexes as well as that from the covalent inhibitory ternary complex formed from enzyme, FdUMP, and 5,10-methylene-H4folate exhibited an identical sequence of Ala-Leu-Pro-Pro-(X)-, and the 5th amino acid was found to be associated with radiolabeled nucleotide ligand. Dansyl-Edman sequence analysis of the active site CNBr peptide, derived from enzyme which had been treated with iodoacetic acid, gave a sequence of Ala-Leu-Pro-Pro-CmCys (where CmCys is carboxymethylcysteine), thus confirming the fact that the fifth residue from the N terminus is Cys-198. In all the cases, the active site Cys-198 residue was found to be covalently linked to the nucleotides. These results provide unequivocal proof that the covalent binary complexes of enzyme with dUMP and dTMP predicted in the catalytic reaction mechanism actually exist.
采用三氯乙酸沉淀法研究了胸苷酸合成酶与其核苷酸底物dUMP、产物dTMP以及抑制剂5-氟脱氧尿苷酸(FdUMP)形成的共价二元复合物。结果发现,除FdUMP外,在未添加叶酸的情况下,dUMP和dTMP均能与该酶发生共价相互作用。研究发现,叶酸、二氢叶酸或四氢叶酸(H4叶酸)的存在能显著增强FdUMP和dUMP与该酶的共价结合,其中H4叶酸的作用最为显著。此外,通过三氯乙酸沉淀法分离出该酶与三种放射性标记核苷酸形成的共价二元复合物,并进行溴化氰裂解。通过反相高效液相色谱法分离出活性位点溴化氰肽段,采用丹磺酰-埃德曼法对其N端的前五个氨基酸残基进行测序。从共价二元复合物以及由酶、FdUMP和5,10-亚甲基-H4叶酸形成的共价抑制三元复合物中获得的每个活性位点肽段均呈现相同的Ala-Leu-Pro-Pro-(X)-序列,且发现第5个氨基酸与放射性标记的核苷酸配体相关。对用碘乙酸处理过的酶衍生的活性位点溴化氰肽段进行丹磺酰-埃德曼序列分析,得到Ala-Leu-Pro-Pro-CmCys序列(其中CmCys为羧甲基半胱氨酸),从而证实了N端的第5个残基为Cys-198这一事实。在所有情况下,均发现活性位点的Cys-198残基与核苷酸共价相连。这些结果明确证明了催化反应机制中预测的酶与dUMP和dTMP形成的共价二元复合物确实存在。