Biochemical and structural insights into PLP fold type IV transaminase from Thermobaculum terrenum

被引:23
作者
Bezsudnova, Ekaterina Yu. [1 ]
Boyko, Konstantin M. [1 ,2 ]
Nikolaeva, Alena Yu [2 ]
Zeifman, Yulia S. [1 ,2 ]
Rakitina, Tatiana, V [2 ,3 ]
Suplatov, Dmitry A. [4 ]
Popov, Vladimir O. [1 ,2 ]
机构
[1] Russian Acad Sci, Res Ctr Biotechnol, Bach Inst Biochem, Leninsky Ave 33,Bld 2, Moscow 119071, Russia
[2] Natl Res Ctr Kurchatov Inst, Kurchatov Complex NBICS Technol, Akad Kurchatova Sqr 1, Moscow 123182, Russia
[3] RAS, Shemyakin & Ovchinnikov Inst Bioorgan Chem, Miklukho Maklaya Str 16-10, Moscow 117997, Russia
[4] Lomonosov Moscow State Univ, Belozersky Inst Physicochem Biol, Leninskiye Gory 1-73, Moscow 119991, Russia
基金
俄罗斯科学基金会;
关键词
PLP-Dependent enzymes; Enzyme catalysis; Branched-chain amino acid aminotransferases; Aromatic amines; Thermostability; X-ray analysis; AMINO-ACID AMINOTRANSFERASE; BRANCHED-CHAIN AMINOTRANSFERASE; DUAL SUBSTRATE RECOGNITION; ESCHERICHIA-COLI; CRYSTAL-STRUCTURES; PURIFICATION; SPECIFICITY; ENZYME; COMPLEXES; GLUTAMATE;
D O I
10.1016/j.biochi.2018.12.017
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The high catalytic efficiency of enzymes under reaction conditions is one of the main goals in biocatalysis. Despite the dramatic progress in the development of more efficient biocatalysts by protein design, the search for natural enzymes with useful properties remains a promising strategy. The pyridoxal 5'-phosphate (PLP)-dependent transaminases represent a group of industrially important enzymes due to their ability to stereoselectively transfer amino groups between diverse substrates; however, the complex mechanism of substrate recognition and conversion makes the design of transaminases a challenging task. Here we report a detailed structural and kinetic study of thermostable transaminase from the bacterium Thermobaculum terrenum (TaTT) using the methods of enzyme kinetics, X-ray crystallography and molecular modeling. TaTT can convert L-branched-chain and L-aromatic amino acids as well as (R)-(+)-1-phenylethylamine at a high rate and with high enantioselectivity. The structures of TaTT in complex with the cofactor pyridoxal 5'-phosphate covalently bound to enzyme and in complex with its reduced form, pyridoxamine 5'-phosphate, were determined at resolutions of 2.19 angstrom and 1.5 angstrom, and deposited in the Protein Data Bank as entries 6GKR and 6Q8E, respectively. TaTT is a fold type IV PLP-dependent enzyme. In terms of structural similarity, the enzyme is close to known branched-chain amino acid aminotransferases, but differences in characteristic sequence motifs in the active site were observed in TaTT compared to canonical branched-chain amino acid aminotransferases, which can explain the improved binding of aromatic amino acids and (R)-(+)-1-phenylethylamine. This study has shown for the first time that high substrate specificity towards both various I.-amino acids and (R)-primary amines can be implemented within one pyridoxal 5'-phosphate-dependent active site of fold type IV. These results complement our knowledge of the catalytic diversity of transaminases and indicate the need for further biochemical and bioinformatic studies to understand the sequence-structurefunction relationship in these enzymes. (C) 2018 Elsevier B.V. and Societe Francaise de Biochimie et Biologie Moleculaire (SFBBM). All rights reserved.
引用
收藏
页码:130 / 138
页数:9
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