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Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride

Harmuful proteins are usually synthesized as inactive precursors and are activated by proteolytic processing. l-Amino acid oxidase (LAAO) is a flavoenzyme that catalyzes the oxidative deamination of l-amino acid to produce a 2-oxo acid with ammonia and highly toxic hydrogen peroxide and, therefore,...

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Autores principales: Kitagawa, Masaki, Ito, Nanako, Matsumoto, Yuya, Saito, Masaya, Tamura, Takashi, Kusakabe, Hitoshi, Inagaki, Kenji, Imada, Katsumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7844570/
https://www.ncbi.nlm.nih.gov/pubmed/33554108
http://dx.doi.org/10.1016/j.yjsbx.2021.100044
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author Kitagawa, Masaki
Ito, Nanako
Matsumoto, Yuya
Saito, Masaya
Tamura, Takashi
Kusakabe, Hitoshi
Inagaki, Kenji
Imada, Katsumi
author_facet Kitagawa, Masaki
Ito, Nanako
Matsumoto, Yuya
Saito, Masaya
Tamura, Takashi
Kusakabe, Hitoshi
Inagaki, Kenji
Imada, Katsumi
author_sort Kitagawa, Masaki
collection PubMed
description Harmuful proteins are usually synthesized as inactive precursors and are activated by proteolytic processing. l-Amino acid oxidase (LAAO) is a flavoenzyme that catalyzes the oxidative deamination of l-amino acid to produce a 2-oxo acid with ammonia and highly toxic hydrogen peroxide and, therefore, is expressed as a precursor. The LAAO precursor shows significant variation in size and the cleavage pattern for activation. However, the molecular mechanism of how the propeptide suppresses the enzyme activity remains unclear except for deaminating/decarboxylating Pseudomonasl-phenylalanine oxidase (PAO), which has a short N-terminal propeptide composed of 14 residues. Here we show the inactivation mechanism of the l-lysine oxidase (LysOX) precursor (prLysOX), which has a long N-terminal propeptide composed of 77 residues, based on the crystal structure at 1.97 Å resolution. The propeptide of prLysOX indirectly changes the active site structure to inhibit the enzyme activity. prLysOX retains weak enzymatic activity with strict specificity for l-lysine and shows raised activity in acidic conditions. The structures of prLysOX crystals that soaked in a solution with various concentrations of l-lysine have revealed that prLysOX can adopt two conformations; one is the inhibitory form, and the other is very similar to mature LysOX. The propeptide region of the latter form is disordered, and l-lysine is bound to the latter form. These results indicate that prLysOX uses a different strategy from PAO to suppress the enzyme activity and suggest that prLysOX can be activated quickly in response to the environmental change without proteolytic processing.
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spelling pubmed-78445702021-02-04 Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride Kitagawa, Masaki Ito, Nanako Matsumoto, Yuya Saito, Masaya Tamura, Takashi Kusakabe, Hitoshi Inagaki, Kenji Imada, Katsumi J Struct Biol X Article Harmuful proteins are usually synthesized as inactive precursors and are activated by proteolytic processing. l-Amino acid oxidase (LAAO) is a flavoenzyme that catalyzes the oxidative deamination of l-amino acid to produce a 2-oxo acid with ammonia and highly toxic hydrogen peroxide and, therefore, is expressed as a precursor. The LAAO precursor shows significant variation in size and the cleavage pattern for activation. However, the molecular mechanism of how the propeptide suppresses the enzyme activity remains unclear except for deaminating/decarboxylating Pseudomonasl-phenylalanine oxidase (PAO), which has a short N-terminal propeptide composed of 14 residues. Here we show the inactivation mechanism of the l-lysine oxidase (LysOX) precursor (prLysOX), which has a long N-terminal propeptide composed of 77 residues, based on the crystal structure at 1.97 Å resolution. The propeptide of prLysOX indirectly changes the active site structure to inhibit the enzyme activity. prLysOX retains weak enzymatic activity with strict specificity for l-lysine and shows raised activity in acidic conditions. The structures of prLysOX crystals that soaked in a solution with various concentrations of l-lysine have revealed that prLysOX can adopt two conformations; one is the inhibitory form, and the other is very similar to mature LysOX. The propeptide region of the latter form is disordered, and l-lysine is bound to the latter form. These results indicate that prLysOX uses a different strategy from PAO to suppress the enzyme activity and suggest that prLysOX can be activated quickly in response to the environmental change without proteolytic processing. Elsevier 2021-01-13 /pmc/articles/PMC7844570/ /pubmed/33554108 http://dx.doi.org/10.1016/j.yjsbx.2021.100044 Text en © 2021 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kitagawa, Masaki
Ito, Nanako
Matsumoto, Yuya
Saito, Masaya
Tamura, Takashi
Kusakabe, Hitoshi
Inagaki, Kenji
Imada, Katsumi
Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride
title Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride
title_full Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride
title_fullStr Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride
title_full_unstemmed Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride
title_short Structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from Trichoderma viride
title_sort structural basis of enzyme activity regulation by the propeptide of l-lysine α-oxidase precursor from trichoderma viride
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7844570/
https://www.ncbi.nlm.nih.gov/pubmed/33554108
http://dx.doi.org/10.1016/j.yjsbx.2021.100044
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