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Transcriptional activation domains interact with ATPase subunits of yeast chromatin remodelling complexes SWI/SNF, RSC and INO80

  • Chromatin remodelling complexes (CRC) are ATP-dependent molecular machines important for the dynamic organization of nucleosomes along eukaryotic DNA. CRCs SWI/SNF, RSC and INO80 can move positioned nucleosomes in promoter DNA, leading to nucleosome-depleted regions which facilitate access of general transcription factors. This function is strongly supported by transcriptional activators being able to interact with subunits of various CRCs. In this work we show that SWI/SNF subunits Swi1, Swi2, Snf5 and Snf6 can bind to activation domains of Ino2 required for expression of phospholipid biosynthetic genes in yeast. We identify an activator binding domain (ABD) of ATPase Swi2 and show that this ABD is functionally dispensable, presumably because ABDs of other SWI/SNF subunits can compensate for the loss. In contrast, mutational characterization of the ABD of the Swi2-related ATPase Sth1 revealed that some conserved basic and hydrophobic amino acids within this domain are essential for the function of Sth1. While ABDs of Swi2 and Sth1 define separate functional protein domains, mapping of an ABD within ATPase Ino80 showed co-localization with its HSA domain also required for binding actin-related proteins. Comparative interaction studies finally demonstrated that several unrelated activators each exhibit a specific binding pattern with ABDs of Swi2, Sth1 and Ino80.

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Metadaten
Author: Eva-Carina Wendegatz, Maike Engelhardt, Hans-Joachim SchüllerORCiD
URN:urn:nbn:de:gbv:9-opus-125748
DOI:https://doi.org/10.1007/s00294-024-01300-x
ISSN:0172-8083
ISSN:1432-0983
Parent Title (English):Current Genetics
Publisher:Springer Nature
Place of publication:Berlin
Document Type:Article
Language:English
Date of Publication (online):2024/09/05
Date of first Publication:2024/12/01
Release Date:2025/08/29
Tag:Activation domains; Activator binding domain; Chromatin remodelling complex; Ino80; Sth1; Swi2
Volume:70
Issue:1
Article Number:15
Page Number:15
Faculties:Mathematisch-Naturwissenschaftliche Fakultät / Interfakultäres Institut für Genetik und Funktionelle Genomforschung (MNF)
Collections:weitere DFG-förderfähige Artikel
Licence (German):License LogoCreative Commons - Namensnennung 4.0 International