Laccase Properties, Physiological Functions, and Evolution

Свойства, физиологические функции и эволюция лакказы
Grzegorz Janusz, Justyna Sulej, Jolanta Polak, Anna Jarosz‐Wilkołazka, Anna Pawlik, Andrzej Paszczyński, Urszula Świderska-Burek
2020-01-31

copper-containing enzymescupredoxin-like domainsenzyme evolutionlaccasemulticopper oxidases
Discovered in 1883, laccase is one of the first enzymes ever described. Now, after almost 140 years of research, it seems that this copper-containing protein with a number of unique catalytic properties is widely distributed across all kingdoms of life. Laccase belongs to the superfamily of multicopper oxidases (MCOs)-a group of enzymes comprising many proteins with different substrate specificities and diverse biological functions. The presence of cupredoxin-like domains allows all MCOs to reduce oxygen to water without producing harmful byproducts. This review describes structural characteristics and plausible evolution of laccase in different taxonomic groups. The remarkable catalytic abilities and broad substrate specificity of laccases are described in relation to other copper-containing MCOs. Through an exhaustive analysis of laccase roles in different taxa, we find that this enzyme evolved to serve an important, common, and protective function in living systems.
1
Comparative analysis across taxa suggests that laccases evolved a common, important, and protective function in living systems.
2
Cupredoxin-like domains enable multicopper oxidases to reduce oxygen to water without generating harmful byproducts.
3
Laccase is a copper-containing enzyme widely distributed across all kingdoms of life after nearly 140 years of research.
4
Laccases belong to the multicopper oxidase superfamily, whose members exhibit diverse substrate specificities and biological functions.
5
Laccases possess remarkable catalytic capabilities and broad substrate specificity compared with other copper-containing multicopper oxidases.

Laccase enzyme (copper-containing multicopper oxidase)

Laccase structural characteristics, catalytic properties, substrate specificity, physiological functions, and evolutionary history

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2020-01-31
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Grzegorz Janusz
Justyna Sulej
Jolanta Polak
Anna Jarosz‐Wilkołazka
Anna Pawlik
Andrzej Paszczyński
Urszula Świderska-Burek
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