Title of article :
Complete Amino Acid Sequence and Characterization of the Reaction Mechanism of a Glucosamine-Induced Novel Alcohol Dehydrogenase from Agrobacterium radiobacter (tumefaciens)
Author/Authors :
Iwamoto، نويسنده , , Ryoko and Kubota، نويسنده , , Humie and Hosoki، نويسنده , , Tomoko and Ikehara، نويسنده , , Kenji F. Tanaka، نويسنده , , Mieko، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
10
From page :
203
To page :
212
Abstract :
A glucosamine-induced novel alcohol dehydrogenase has been isolated from Agrobacterium radiobacter (tumefaciens) and its fundamental properties have been characterized. The enzyme catalyzes NAD-dependent dehydrogenation of aliphatic alcohols and amino alcohols. In this work, the complete amino acid sequence of the alcohol dehydrogenase was determined by PCR method using genomic DNA of A. radiobacter as template. The enzyme comprises 336 amino acids and has a molecular mass of 36 kDa. The primary structure of the enzyme demonstrates a high homology to structures of alcohol dehydrogenases from Shinorhizobium meliloti (83% identity, 90% positive) and Pseudomonas aeruginosa (65% identity, 76% positive). The two Zn2+ ion binding sites, both the active site and another site that contributed to stabilization of the enzyme, are conserved in those enzymes. Sequences analysis of the NAD-dependent dehydrogenase family using a hypothetical phylogenetic tree indicates that these three enzymes form a new group distinct from other members of the Zn-containing long-chain alcohol dehydrogenase family. The physicochemical properties of alcohol dehydrogenase from A. radiobacter were characterized as follows. (1) Stereospecificity of the hydride transfer from ethanol to NADH was categorized as pro-R type by NMR spectra of NADH formed in the enzymatic reaction using ethanol-D6 was used as substrate. (2) Optimal pH for all alcohols with no amino group examined was pH 8.5 (of the C2–C6 alcohols, n-amyl alcohol demonstrated the highest activity). Conversely, glucosaminitol was optimally dehydrogenated at pH 10.0. (3) The rate-determining step of the dehydrogenase for ethanol is deprotonation of the enzyme–NAD-Zn-OHCH2CH3 complex to enzyme–NAD-Zn-O−CH2CH3 complex and that for glucosaminitol is H2O addition to enzyme–Zn-NADH complex.
Keywords :
alcohol dehydrogenase , glucosaminitol , Zn2+ ion , Agrobacterium radiobacter (tumefaciens) , deuterium effects , horse liver alcohol dehydrogenase , NAD
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
2002
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1619163
Link To Document :
بازگشت