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A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler

Fun30 is the prototype of the Fun30-SMARCAD1-ETL subfamily of nucleosome remodelers involved in DNA repair and gene silencing. These proteins appear to act as single-subunit nucleosome remodelers, but their molecular mechanisms are, at this point, poorly understood. Using multiple sequence alignment...

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Autores principales: Karl, Leonhard A, Galanti, Lorenzo, Bantele, Susanne CS, Metzner, Felix, Šafarić, Barbara, Rajappa, Lional, Foster, Benjamin, Pires, Vanessa Borges, Bansal, Priyanka, Chacin, Erika, Basquin, Jerôme, Duderstadt, Karl E, Kurat, Christoph F, Bartke, Till, Hopfner, Karl-Peter, Pfander, Boris
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10355287/
https://www.ncbi.nlm.nih.gov/pubmed/37468166
http://dx.doi.org/10.26508/lsa.202201790
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author Karl, Leonhard A
Galanti, Lorenzo
Bantele, Susanne CS
Metzner, Felix
Šafarić, Barbara
Rajappa, Lional
Foster, Benjamin
Pires, Vanessa Borges
Bansal, Priyanka
Chacin, Erika
Basquin, Jerôme
Duderstadt, Karl E
Kurat, Christoph F
Bartke, Till
Hopfner, Karl-Peter
Pfander, Boris
author_facet Karl, Leonhard A
Galanti, Lorenzo
Bantele, Susanne CS
Metzner, Felix
Šafarić, Barbara
Rajappa, Lional
Foster, Benjamin
Pires, Vanessa Borges
Bansal, Priyanka
Chacin, Erika
Basquin, Jerôme
Duderstadt, Karl E
Kurat, Christoph F
Bartke, Till
Hopfner, Karl-Peter
Pfander, Boris
author_sort Karl, Leonhard A
collection PubMed
description Fun30 is the prototype of the Fun30-SMARCAD1-ETL subfamily of nucleosome remodelers involved in DNA repair and gene silencing. These proteins appear to act as single-subunit nucleosome remodelers, but their molecular mechanisms are, at this point, poorly understood. Using multiple sequence alignment and structure prediction, we identify an evolutionarily conserved domain that is modeled to contain a SAM-like fold with one long, protruding helix, which we term SAM-key. Deletion of the SAM-key within budding yeast Fun30 leads to a defect in DNA repair and gene silencing similar to that of the fun30Δ mutant. In vitro, Fun30 protein lacking the SAM-key is able to bind nucleosomes but is deficient in DNA-stimulated ATPase activity and nucleosome sliding and eviction. A structural model based on AlphaFold2 prediction and verified by crosslinking-MS indicates an interaction of the long SAM-key helix with protrusion I, a subdomain located between the two ATPase lobes that is critical for control of enzymatic activity. Mutation of the interaction interface phenocopies the domain deletion with a lack of DNA-stimulated ATPase activation and a nucleosome-remodeling defect, thereby confirming a role of the SAM-key helix in regulating ATPase activity. Our data thereby demonstrate a central role of the SAM-key domain in mediating the activation of Fun30 catalytic activity, thus highlighting the importance of allosteric activation for this class of enzymes.
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spelling pubmed-103552872023-07-20 A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler Karl, Leonhard A Galanti, Lorenzo Bantele, Susanne CS Metzner, Felix Šafarić, Barbara Rajappa, Lional Foster, Benjamin Pires, Vanessa Borges Bansal, Priyanka Chacin, Erika Basquin, Jerôme Duderstadt, Karl E Kurat, Christoph F Bartke, Till Hopfner, Karl-Peter Pfander, Boris Life Sci Alliance Research Articles Fun30 is the prototype of the Fun30-SMARCAD1-ETL subfamily of nucleosome remodelers involved in DNA repair and gene silencing. These proteins appear to act as single-subunit nucleosome remodelers, but their molecular mechanisms are, at this point, poorly understood. Using multiple sequence alignment and structure prediction, we identify an evolutionarily conserved domain that is modeled to contain a SAM-like fold with one long, protruding helix, which we term SAM-key. Deletion of the SAM-key within budding yeast Fun30 leads to a defect in DNA repair and gene silencing similar to that of the fun30Δ mutant. In vitro, Fun30 protein lacking the SAM-key is able to bind nucleosomes but is deficient in DNA-stimulated ATPase activity and nucleosome sliding and eviction. A structural model based on AlphaFold2 prediction and verified by crosslinking-MS indicates an interaction of the long SAM-key helix with protrusion I, a subdomain located between the two ATPase lobes that is critical for control of enzymatic activity. Mutation of the interaction interface phenocopies the domain deletion with a lack of DNA-stimulated ATPase activation and a nucleosome-remodeling defect, thereby confirming a role of the SAM-key helix in regulating ATPase activity. Our data thereby demonstrate a central role of the SAM-key domain in mediating the activation of Fun30 catalytic activity, thus highlighting the importance of allosteric activation for this class of enzymes. Life Science Alliance LLC 2023-07-19 /pmc/articles/PMC10355287/ /pubmed/37468166 http://dx.doi.org/10.26508/lsa.202201790 Text en © 2023 Karl et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Karl, Leonhard A
Galanti, Lorenzo
Bantele, Susanne CS
Metzner, Felix
Šafarić, Barbara
Rajappa, Lional
Foster, Benjamin
Pires, Vanessa Borges
Bansal, Priyanka
Chacin, Erika
Basquin, Jerôme
Duderstadt, Karl E
Kurat, Christoph F
Bartke, Till
Hopfner, Karl-Peter
Pfander, Boris
A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler
title A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler
title_full A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler
title_fullStr A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler
title_full_unstemmed A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler
title_short A SAM-key domain required for enzymatic activity of the Fun30 nucleosome remodeler
title_sort sam-key domain required for enzymatic activity of the fun30 nucleosome remodeler
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10355287/
https://www.ncbi.nlm.nih.gov/pubmed/37468166
http://dx.doi.org/10.26508/lsa.202201790
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