Kudou Daizou, Misaki Shintaro, Yamashita Masao, Tamura Takashi, Esaki Nobuyoshi, Inagaki Kenji
Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
Biosci Biotechnol Biochem. 2008 Jul;72(7):1722-30. doi: 10.1271/bbb.80015. Epub 2008 Jul 7.
The cysteinyl residue at the active site of L-methionine gamma-lyase from Pseudomonas putida (MGL_Pp) is highly conserved among the heterologous MGLs. To determine the role of Cys116, we constructed 19 variants of C116X MGL_Pp by saturation mutagenesis. The Cys116 mutants possessed little catalytic activity, while their affinity for each substrate was almost the same as that of the wild type. Especially, the C116S, C116A, and C116H variants composed active site catalytic function as measured by the kinetic parameter k(cat) toward L-methionine. Furthermore, the mutagenesis of Cys116 also affected the substrate specificity of MGL_Pp at the active center. Substitution of Cys116 for His led to a marked increase in activity toward L-cysteine and a decrease in that toward L-methionine. Propargylglycine inactivated the WT MGL, C116S, and C116A mutants. Based on these results, we postulate that Cys116 plays an important role in the gamma-elimination reaction of L-methionine and in substrate recognition in the MGLs.
恶臭假单胞菌L-蛋氨酸γ-裂解酶(MGL_Pp)活性位点的半胱氨酸残基在异源MGL中高度保守。为了确定Cys116的作用,我们通过饱和诱变构建了19种C116X MGL_Pp变体。Cys116突变体几乎没有催化活性,而它们对每种底物的亲和力与野生型几乎相同。特别是,通过对L-蛋氨酸的动力学参数k(cat)测量,C116S、C116A和C116H变体组成了活性位点催化功能。此外,Cys116的诱变也影响了MGL_Pp在活性中心的底物特异性。将Cys116替换为His导致对L-半胱氨酸的活性显著增加,而对L-蛋氨酸的活性降低。炔丙基甘氨酸使野生型MGL、C116S和C116A突变体失活。基于这些结果,我们推测Cys116在L-蛋氨酸的γ-消除反应和MGLs的底物识别中起重要作用。