Laccase Engineering: Redox Potential Is Not the Only Activity-Determining Feature in the Metalloproteins
Инженерия лакказы: окислительно-восстановительный потенциал — не единственный фактор, определяющий активность металлопротеинов
2023-08-23
SCID: 54.1/gbmpjsn2
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laccase engineeringmetalloproteinsmulticopper oxidasesredox potentialsubstrate binding site
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Abstract (AI)
Laccase, one of the metalloproteins, belongs to the multicopper oxidase family. It oxidizes a wide range of substrates and generates water as a sole by-product. The engineering of laccase is important to broaden their industrial and environmental applications. The general assumption is that the low redox potential of laccases is the principal obstacle, as evidenced by their low activity towards certain substrates. Therefore, the primary goal of engineering laccases is to improve their oxidation capability, thereby increasing their redox potential. Even though some of the determinants of laccase are known, it is still not entirely clear how to enhance its redox potential. However, the laccase active site has additional characteristics that regulate the enzymes' activity and specificity. These include the electrostatic and hydrophobic environment of the substrate binding pocket, the steric effect at the substrate binding site, and the orientation of the binding substrate with respect to the T1 site of the laccase. In this review, these features of the substrate binding site will be discussed to highlight their importance as a target for future laccase engineering.
Key Findings
1
Future laccase engineering should target substrate-binding-site properties alongside efforts to modify redox potential.
2
Laccase oxidation performance is not determined solely by its redox potential, challenging the prevailing engineering assumption.
3
Steric effects at the substrate-binding site influence which substrates laccases can oxidize and how efficiently.
4
Substrate orientation relative to the T1 copper site is an additional determinant of laccase catalytic activity.
5
The substrate-binding pocket’s electrostatic and hydrophobic environment regulates laccase activity and substrate specificity.
Research Object
laccase enzymes (multicopper oxidase metalloproteins)
Research Subject
the substrate-binding-site features that determine laccase activity and specificity, including electrostatic and hydrophobic environment, steric effects, and substrate orientation relative to the T1 site
Publication Details
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2023-08-23
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