Gocht M, Marahiel M A
Fachbereich Chemie/Biochemie, Philipps-Universität Marburg, Germany.
J Bacteriol. 1994 May;176(9):2654-62. doi: 10.1128/jb.176.9.2654-2662.1994.
The D-phenylalanine-activating enzyme tyrocidine synthetase I (TycA) from Bacillus brevis ATCC 8185 was overexpressed in Escherichia coli, purified to homogeneity, and assayed for ATP-PPi exchange and covalent binding of phenylalanine by the thiotemplate mechanism. Amino acid exchanges in four different cores of TycA created by site-directed mutagenesis revealed the amino acid residues involved in aminoacyladenylate formation and in covalent thioester formation. Mutations in the putative ATP-binding site SGTTGKPKG caused a decreased phenylalanine-dependent ATP-PPi exchange activity to 10% of the wild-type level for a Lys-186-to-Arg substitution and an almost complete loss of activity (< 1%) for a Lys-186-to-Thr exchange. Alteration of Asp-401 to Asn in the ATPase motif TGDL of TycA decreased the phenylalanine-dependent ATP-PPi exchange activity to 75% of wild type, while an Asp-401-to-Ser mutation decreased the activity to 10% of the wild-type level. Replacement of Ser-562 in the putative thioester-binding motif LGGDSI to Ala or Gly caused a reduction in trichloroacetic acid-precipitable TycA-[14C]phenylalanine complex to one-third of the wild-type level. However, no cleavable [14C]phenylalanine could be detected after treatment with performic acid, indicating that the resulting mutant was unable to form thioester with phenylalanine. In E. coli, TycA was labeled with beta-[3H]alanine, a precursor of 4'-phosphopantetheine, indicating that TycA is modified with a beta-alanine-containing cofactor.
来自短短芽孢杆菌ATCC 8185的D-苯丙氨酸激活酶短杆菌酪肽合成酶I(TycA)在大肠杆菌中过表达,纯化至同质,并通过硫酯模板机制检测其ATP-PPi交换以及苯丙氨酸的共价结合。通过定点诱变在TycA的四个不同核心区域进行的氨基酸交换揭示了参与氨酰腺苷酸形成和共价硫酯形成的氨基酸残基。假定的ATP结合位点SGTTGKPKG中的突变导致苯丙氨酸依赖性ATP-PPi交换活性降低,对于赖氨酸-186到精氨酸的替换,活性降至野生型水平的10%,而对于赖氨酸-186到苏氨酸的交换,活性几乎完全丧失(<1%)。TycA的ATP酶基序TGDL中的天冬氨酸-401替换为天冬酰胺,使苯丙氨酸依赖性ATP-PPi交换活性降至野生型的75%,而天冬氨酸-401到丝氨酸的突变使活性降至野生型水平的10%。假定的硫酯结合基序LGGDSI中的丝氨酸-562替换为丙氨酸或甘氨酸,导致三氯乙酸可沉淀型TycA-[14C]苯丙氨酸复合物减少至野生型水平的三分之一。然而,在用过甲酸处理后未检测到可裂解的[14C]苯丙氨酸,这表明所得突变体无法与苯丙氨酸形成硫酯。在大肠杆菌中,TycA用β-[3H]丙氨酸标记,β-[3H]丙氨酸是4'-磷酸泛酰巯基乙胺的前体,这表明TycA被含β-丙氨酸的辅因子修饰。