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Role and structure of the small subunit forming heterodimers with laccase-like enzymes

Authors :
Bio-based Industries Joint Undertaking
European Commission
Ministerio de Economía y Competitividad (España)
Ministerio de Ciencia e Innovación (España)
Consejo Superior de Investigaciones Científicas (España)
Ministerio de Universidades (España)
Fundación Tatiana Pérez de Guzmán el Bueno
Aza, Pablo [0000-0002-8703-8399]
Linde, Dolores [0000-0002-0359-0566]
Molpeceres, Gonzalo [0000-0002-4366-9412]
Vind, Jesper [0000-0002-1336-9531]
Medrano, Francisco Javier [0000-0002-8185-9751]
Camarero, Susana [0000-0002-2812-895X]
Aza, Pablo
Linde, Dolores
Molpeceres, Gonzalo
Vind, Jesper
Medrano, Francisco Javier
Camarero, Susana
Bio-based Industries Joint Undertaking
European Commission
Ministerio de Economía y Competitividad (España)
Ministerio de Ciencia e Innovación (España)
Consejo Superior de Investigaciones Científicas (España)
Ministerio de Universidades (España)
Fundación Tatiana Pérez de Guzmán el Bueno
Aza, Pablo [0000-0002-8703-8399]
Linde, Dolores [0000-0002-0359-0566]
Molpeceres, Gonzalo [0000-0002-4366-9412]
Vind, Jesper [0000-0002-1336-9531]
Medrano, Francisco Javier [0000-0002-8185-9751]
Camarero, Susana [0000-0002-2812-895X]
Aza, Pablo
Linde, Dolores
Molpeceres, Gonzalo
Vind, Jesper
Medrano, Francisco Javier
Camarero, Susana
Publication Year :
2023

Abstract

Unlike laccases sensu stricto, which are usually monomeric enzymes, laccase-like enzymes recently re-classified as Novel Laccases (NLACs) are characterized by the formation of heterodimers with small proteins (subunits) of unknown function. Here the NLAC from Pleurotus eryngii (PeNL) and a small protein selected from the fungal genome, that is homologous to reported POXA3 from Pleurotus ostreatus, were produced in Aspergillus oryzae separately or together. The two proteins interacted regardless of whether the small subunit was co-expressed or exogenously added to the enzyme. The stability and catalytic activity of PeNL was significantly enhanced in the presence of the small subunit. SEC-MALS analysis confirmed that the complex PeNL-ss is a heterodimer of 77.4 kDa. The crystallographic structure of the small protein expressed in Escherichia coli was solved at 1.6 Å resolution. This is the first structure elucidated of a small subunit of a NLAC. The helix bundle structure of the small subunit accommodates well with the enzyme model structure, including interactions with specific regions of NLACs and some amino acid residues of the substrate-binding loops.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1395213793
Document Type :
Electronic Resource