Inoue H, Inagaki K, Eriguchi S I, Tamura T, Esaki N, Soda K, Tanaka H
Department of Bioresources Chemistry, Faculty of Agriculture, Okayama University, Okayama-shi, Japan.
J Bacteriol. 1997 Jun;179(12):3956-62. doi: 10.1128/jb.179.12.3956-3962.1997.
A 15-kb region of Pseudomonas putida chromosomal DNA containing the mde operon and an upstream regulatory gene (mdeR) has been cloned and sequenced. The mde operon contains two structural genes involved in L-methionine degradative metabolism: the already-identified mdeA, which encodes L-methionine gamma-lyase (H. Inoue, K. Inagaki, M. Sugimoto, N. Esaki, K. Soda, and H. Tanaka. J. Biochem. (Tokyo) 117:1120-1125, 1995), and mdeB, which encodes a homologous protein to the homodimeric-type E1 component of pyruvate dehydrogenase complex. A rho-independent terminator was present just downstream of mdeB, and open reading frames corresponding to other components of alpha-keto acid dehydrogenase complex were not found. When MdeB was overproduced in Escherichia coli, the cell extract showed the E1 activity with high specificity for alpha-ketobutyrate rather than pyruvate. These results suggest that MdeB plays an important role in the metabolism of alpha-ketobutyrate produced by MdeA from L-methionine. Accordingly, mdeB encodes a novel E1 component, alpha-ketobutyrate dehydrogenase E1 component, of an unknown alpha-keto acid dehydrogenase complex in P. putida. In addition, we found that the mdeR gene was located on the opposite strand and began at 127 bp from the translational start site of mdeA. The mdeR gene product has been identified as a member of the leucine-responsive regulatory protein (Lrp) family and revealed to act as an essential positive regulator allowing the expression of the mdeAB operon.
含有mde操纵子和上游调控基因(mdeR)的恶臭假单胞菌染色体DNA的一个15 kb区域已被克隆和测序。mde操纵子包含两个参与L-蛋氨酸降解代谢的结构基因:已鉴定的mdeA,其编码L-蛋氨酸γ-裂解酶(H. Inoue,K. Inagaki,M. Sugimoto,N. Esaki,K. Soda和H. Tanaka。J. Biochem.(东京)117:1120 - 1125,1995),以及mdeB,其编码与丙酮酸脱氢酶复合体的同二聚体型E1组分同源的蛋白质。在mdeB的下游刚好存在一个不依赖ρ因子的终止子,未发现与α-酮酸脱氢酶复合体其他组分相对应的开放阅读框。当MdeB在大肠杆菌中过量表达时,细胞提取物显示出对α-酮丁酸而非丙酮酸具有高特异性的E1活性。这些结果表明,MdeB在由MdeA从L-蛋氨酸产生的α-酮丁酸的代谢中起重要作用。因此,mdeB编码恶臭假单胞菌中一种未知的α-酮酸脱氢酶复合体的新型E1组分,即α-酮丁酸脱氢酶E1组分。此外,我们发现mdeR基因位于相反的链上,从mdeA的翻译起始位点127 bp处开始。mdeR基因产物已被鉴定为亮氨酸响应调节蛋白(Lrp)家族的成员,并被揭示为允许mdeAB操纵子表达的必需正调控因子。