Helmholtz Gemeinschaft

Search
Browse
Statistics
Feeds

Structural evidence of active site adaptability towards different sized substrates of aromatic amino acid aminotransferase from Psychrobacter sp. B6

[img]
Preview
PDF (Original Article) - Requires a PDF viewer such as GSview, Xpdf or Adobe Acrobat Reader
4MB
[img] Other (Supplementary Material)
2MB

Item Type:Article
Title:Structural evidence of active site adaptability towards different sized substrates of aromatic amino acid aminotransferase from Psychrobacter sp. B6
Creators Name:Bujacz, A. and Rum, J. and Rutkiewicz, M. and Pietrzyk-Brzezinska, A.J. and Bujacz, G.
Abstract:Aromatic amino acid aminotransferases present a special potential in the production of drugs and synthons, thanks to their ability to accommodate a wider range of substrates in their active site, in contrast to aliphatic amino acid aminotransferases. The mechanism of active site adjustment toward substrates of psychrophilic aromatic amino acid aminotransferase (PsyArAT) from Psychrobacter sp. B6 is discussed based on crystal structures of complexes with four hydroxy-analogs of substrates: phenylalanine, tyrosine, tryptophan and aspartic acid. These competitive inhibitors are bound in the active center of PsyArAT but do not undergo transamination reaction, which makes them an outstanding tool for examination of the enzyme catalytic center. The use of hydroxy-acids enabled insight into substrate binding by native PsyArAT, without mutating the catalytic lysine and modifying cofactor interactions. Thus, the binding mode of substrates and the resulting analysis of the volume of the catalytic site is close to a native condition. Observation of these inhibitors’ binding allows for explanation of the enzyme’s adaptability to process various sizes of substrates and to gain knowledge about its potential biotechnological application. Depending on the character and size of the used inhibitors, the enzyme crystallized in different space groups and showed conformational changes of the active site upon ligand binding.
Keywords:Crystal Structure, Aromatic Amino Acids Aminotransferase, Active Center Adaptability, Substrate Specificity, Psychrophilic, Enzyme-Inhibitor Complexes
Source:Materials
ISSN:1996-1944
Publisher:MDPI
Volume:14
Number:12
Page Range:3351
Date:2 June 2021
Official Publication:https://doi.org/10.3390/ma14123351
PubMed:View item in PubMed

Repository Staff Only: item control page

Downloads

Downloads per month over past year

Open Access
MDC Library