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Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine

Lipases comprise a large class of hydrolytic enzymes which catalyze the cleavage of the ester bonds in triacylglycerols and find numerous biotechnological applications. Previously, we have cloned the gene coding for a novel esterase PMGL2 from a Siberian permafrost metagenomic DNA library. We have d...

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Autores principales: Boyko, Konstantin M., Kryukova, Marya V., Petrovskaya, Lada E., Nikolaeva, Alena Y., Korzhenevsky, Dmitry A., Novototskaya-Vlasova, Ksenia A., Rivkina, Elizaveta M., Dolgikh, Dmitry A., Kirpichnikov, Mikhail P., Popov, Vladimir O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6986724/
https://www.ncbi.nlm.nih.gov/pubmed/31990908
http://dx.doi.org/10.1371/journal.pone.0226838
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author Boyko, Konstantin M.
Kryukova, Marya V.
Petrovskaya, Lada E.
Nikolaeva, Alena Y.
Korzhenevsky, Dmitry A.
Novototskaya-Vlasova, Ksenia A.
Rivkina, Elizaveta M.
Dolgikh, Dmitry A.
Kirpichnikov, Mikhail P.
Popov, Vladimir O.
author_facet Boyko, Konstantin M.
Kryukova, Marya V.
Petrovskaya, Lada E.
Nikolaeva, Alena Y.
Korzhenevsky, Dmitry A.
Novototskaya-Vlasova, Ksenia A.
Rivkina, Elizaveta M.
Dolgikh, Dmitry A.
Kirpichnikov, Mikhail P.
Popov, Vladimir O.
author_sort Boyko, Konstantin M.
collection PubMed
description Lipases comprise a large class of hydrolytic enzymes which catalyze the cleavage of the ester bonds in triacylglycerols and find numerous biotechnological applications. Previously, we have cloned the gene coding for a novel esterase PMGL2 from a Siberian permafrost metagenomic DNA library. We have determined the 3D structure of PMGL2 which belongs to the hormone-sensitive lipase (HSL) family and contains a new variant of the active site motif, GCSAG. Similar to many other HSLs, PMGL2 forms dimers in solution and in the crystal. Our results demonstrated that PMGL2 and structurally characterized members of the GTSAG motif subfamily possess a common dimerization interface that significantly differs from that of members of the GDSAG subfamily of known structure. Moreover, PMGL2 had a unique organization of the active site cavity with significantly different topology compared to the other lipolytic enzymes from the HSL family with known structure including the distinct orientation of the active site entrances within the dimer and about four times larger size of the active site cavity. To study the role of the cysteine residue in GCSAG motif of PMGL2, the catalytic properties and structure of its double C173T/C202S mutant were examined and found to be very similar to the wild type protein. The presence of the bound PEG molecule in the active site of the mutant form allowed for precise mapping of the amino acid residues forming the substrate cavity.
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spelling pubmed-69867242020-02-19 Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine Boyko, Konstantin M. Kryukova, Marya V. Petrovskaya, Lada E. Nikolaeva, Alena Y. Korzhenevsky, Dmitry A. Novototskaya-Vlasova, Ksenia A. Rivkina, Elizaveta M. Dolgikh, Dmitry A. Kirpichnikov, Mikhail P. Popov, Vladimir O. PLoS One Research Article Lipases comprise a large class of hydrolytic enzymes which catalyze the cleavage of the ester bonds in triacylglycerols and find numerous biotechnological applications. Previously, we have cloned the gene coding for a novel esterase PMGL2 from a Siberian permafrost metagenomic DNA library. We have determined the 3D structure of PMGL2 which belongs to the hormone-sensitive lipase (HSL) family and contains a new variant of the active site motif, GCSAG. Similar to many other HSLs, PMGL2 forms dimers in solution and in the crystal. Our results demonstrated that PMGL2 and structurally characterized members of the GTSAG motif subfamily possess a common dimerization interface that significantly differs from that of members of the GDSAG subfamily of known structure. Moreover, PMGL2 had a unique organization of the active site cavity with significantly different topology compared to the other lipolytic enzymes from the HSL family with known structure including the distinct orientation of the active site entrances within the dimer and about four times larger size of the active site cavity. To study the role of the cysteine residue in GCSAG motif of PMGL2, the catalytic properties and structure of its double C173T/C202S mutant were examined and found to be very similar to the wild type protein. The presence of the bound PEG molecule in the active site of the mutant form allowed for precise mapping of the amino acid residues forming the substrate cavity. Public Library of Science 2020-01-28 /pmc/articles/PMC6986724/ /pubmed/31990908 http://dx.doi.org/10.1371/journal.pone.0226838 Text en © 2020 Boyko et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Boyko, Konstantin M.
Kryukova, Marya V.
Petrovskaya, Lada E.
Nikolaeva, Alena Y.
Korzhenevsky, Dmitry A.
Novototskaya-Vlasova, Ksenia A.
Rivkina, Elizaveta M.
Dolgikh, Dmitry A.
Kirpichnikov, Mikhail P.
Popov, Vladimir O.
Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine
title Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine
title_full Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine
title_fullStr Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine
title_full_unstemmed Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine
title_short Crystal structure of PMGL2 esterase from the hormone-sensitive lipase family with GCSAG motif around the catalytic serine
title_sort crystal structure of pmgl2 esterase from the hormone-sensitive lipase family with gcsag motif around the catalytic serine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6986724/
https://www.ncbi.nlm.nih.gov/pubmed/31990908
http://dx.doi.org/10.1371/journal.pone.0226838
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