Stereospecificity of isotopic exchange of C-α-protons of glycine catalyzed by three PLP-dependent lyases: the unusual case of tyrosine phenol-lyase
Autor: | Yaroslav V. Tkachev, Vitalia V. Koulikova, Nicolai G. Faleev, Lyudmila N. Zakomirdina, V. V. Komissarov, Vladimir P. Timofeev, Tatyana V. Demidkina, Marina A. Tsvetikova, Olga I. Gogoleva, Elena A. Morozova |
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Rok vydání: | 2010 |
Předmět: |
Stereochemistry
Clinical Biochemistry Glycine Tyrosine phenol-lyase Biochemistry Cofactor chemistry.chemical_compound Stereospecificity Bacterial Proteins Proteus vulgaris Tyrosine Phenol-Lyase Pyridoxal Alanine Carbon Isotopes biology Tryptophanase Organic Chemistry Tryptophan Active site Stereoisomerism Citrobacter freundii Carbon-Sulfur Lyases Kinetics chemistry Pyridoxal Phosphate Biocatalysis biology.protein Protons |
Zdroj: | Amino Acids. 41:1247-1256 |
ISSN: | 1438-2199 0939-4451 |
Popis: | A comparative study of the kinetics and stereospecificity of isotopic exchange of the pro-2R- and pro-2S protons of glycine in (2)H(2)O under the action of tyrosine phenol-lyase (TPL), tryptophan indole-lyase (TIL) and methionine γ-lyase (MGL) was undertaken. The kinetics of exchange was monitored using both (1)H- and (13)C-NMR. In the three compared lyases the stereospecificities of the main reactions with natural substrates dictate orthogonal orientation of the pro-2R proton of glycine with respect to the cofactor pyridoxal 5'-phosphate (PLP) plane. Consequently, according to Dunathan's postulate with all the three enzymes pro-2R proton should exchange faster than does the pro-2S one. In fact the found ratios of 2R:2S reactivities are 1:20 for TPL, 108:1 for TIL, and 1,440:1 for MGL. Thus, TPL displays an unprecedented inversion of stereospecificity. A probable mechanism of the observed phenomenon is suggested, which is based on the X-ray data for the quinonoid intermediate, formed in the reaction of TPL with L-alanine. The mechanism implies different conformational changes in the active site upon binding of glycine and alanine. These changes can lead to relative stabilization of either the neutral amino group, accepting the α-proton, or the respective ammonium group, which is formed after the proton abstraction. |
Databáze: | OpenAIRE |
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