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Functional studies of the yeast Med5, Med15 and Med16 mediator tail subunits
Umeå universitet, Medicinska fakulteten, Institutionen för medicinsk kemi och biofysik.
Umeå universitet, Medicinska fakulteten, Institutionen för medicinsk kemi och biofysik.
Umeå universitet, Medicinska fakulteten, Institutionen för medicinsk kemi och biofysik.
Umeå universitet, Teknisk-naturvetenskapliga fakulteten, Institutionen för matematik och matematisk statistik.
Visa övriga samt affilieringar
2013 (Engelska)Ingår i: PLOS ONE, E-ISSN 1932-6203, Vol. 8, nr 8, artikel-id e73137Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

The yeast Mediator complex can be divided into three modules, designated Head, Middle and Tail. Tail comprises the Med2, Med3, Med5, Med15 and Med16 protein subunits, which are all encoded by genes that are individually non-essential for viability. In cells lacking Med16, Tail is displaced from Head and Middle. However, inactivation of MED5/MED15 and MED15/MED16 are synthetically lethal, indicating that Tail performs essential functions as a separate complex even when it is not bound to Middle and Head. We have used the N-Degron method to create temperature-sensitive (ts) mutants in the Mediator tail subunits Med5, Med15 and Med16 to study the immediate effects on global gene expression when each subunit is individually inactivated, and when Med5/15 or Med15/16 are inactivated together. We identify 25 genes in each double mutant that show a significant change in expression when compared to the corresponding single mutants and to the wild type strain. Importantly, 13 of the 25 identified genes are common for both double mutants. We also find that all strains in which MED15 is inactivated show down-regulation of genes that have been identified as targets for the Ace2 transcriptional activator protein, which is important for progression through the G1 phase of the cell cycle. Supporting this observation, we demonstrate that loss of Med15 leads to a G1 arrest phenotype. Collectively, these findings provide insight into the function of the Mediator Tail module.

Ort, förlag, år, upplaga, sidor
Public Library of Science (PLOS) , 2013. Vol. 8, nr 8, artikel-id e73137
Nationell ämneskategori
Medicinsk bioteknologi (med inriktning mot cellbiologi (inklusive stamcellsbiologi), molekylärbiologi, mikrobiologi, biokemi eller biofarmaci)
Identifikatorer
URN: urn:nbn:se:umu:diva-81837DOI: 10.1371/journal.pone.0073137ISI: 000324470700057PubMedID: 23991176Scopus ID: 2-s2.0-84882774470OAI: oai:DiVA.org:umu-81837DiVA, id: diva2:658972
Forskningsfinansiär
CancerfondenVetenskapsrådetKempestiftelsernaTillgänglig från: 2013-10-23 Skapad: 2013-10-22 Senast uppdaterad: 2023-10-25Bibliografiskt granskad
Ingår i avhandling
1. Studies of the chromatin form of yeast Mediator and the function of its tail module
Öppna denna publikation i ny flik eller fönster >>Studies of the chromatin form of yeast Mediator and the function of its tail module
2023 (Engelska)Doktorsavhandling, sammanläggning (Övrigt vetenskapligt)
Alternativ titel[sv]
Studier av den kromatinbundna formen av Mediatorn samt funktionen för dess svansdomän
Abstract [en]

Mediator is a large, multifunctional complex that is conserved in eukaryotes. It was first discovered in Saccharomyces cerevisiaeas required for transcriptional activators to function in a reconstituted in vitro system. Mediator is also important for stimulation of basal, unregulated transcription, and transcriptional repression. In yeast, Mediator consists of 25 subunits divided into head, middle, and tail modules, and is intermittently associated with a Cdk8 kinase module (CKM). The head and middle bind to the RNA polymerase II (Pol II) while the tail is responsible for binding to gene-specific transcriptional regulators. Most head and middle subunits are essential, whereas all tail module subunits are encoded by non-essential genes. CKM is mostly involved in transcriptional repression by binding Mediator in a way that sterically blocks the binding of Pol II to Mediator. 

Mediator is traditionally purified from the ‘non-chromatin’ fraction of whole-cell extracts. Since most Mediator functions occur in a chromatin context, we set out to purify Mediator from the chromatin fraction of cell extracts. We performed affinity-purification using strains expressing epitope-tagged Mediator subunits, combined with mass spectrometry to reveal the composition of chromatin-bound Mediator. We found that Mediator in chromatin interacts with several protein complexes involved in different aspects of gene expression. Several of them, such as CPF, CF IA, and TFIIB have been shown to be involved in gene looping. Using Chromatin immunoprecipitation (ChIP)-seq experiments, we localized Mediator occupancy genome-wide. As expected, we found enrichment of Mediator at gene promoters, but also at Chromatin Interaction Domain boundaries (CIDBs), which are important for chromatin organization and transcriptional regulation. 

We also investigated the yeast Tail module function in detail. Individually, Tail subunit mutants are non-essential, but med15/med16 or med5/med15 strain are lethal. We used the N-degron system to conditionally deplete Med15/Med16 or Med5/Med15 and studied their effects on global gene expression using MicroArray assays. Several meiosis and sporulation genes were upregulated in the med5/med15 and med15/med16. In support of this, Rck1 which is a repressor of meiosis and sporulation rate in diploid cells, was downregulated in both strains. All strains where Med15 expression was depleted showed downregulation of several target genes for the Ace2 transcription factor which is important for cell cycle progression through the G1 cell cycle phase. Accordingly, all our med15-degron strains showed a G1-phase arrest in flow cytometry assays. 

Finally, we investigated the tail module subunit Med2 which has a phosphorylation site at position S208. We found that point mutations of S208A led to downregulation of several genes that are usually expressed during anaerobic growth. We also found that a med2 strain was unable to grow under anaerobic conditions.

Ort, förlag, år, upplaga, sidor
Umeå: Umeå universitet, 2023. s. 50
Serie
Umeå University medical dissertations, ISSN 0346-6612 ; 2266
Nyckelord
Mediator complex, Transcriptional regulation, yeast, tail module, transcription
Nationell ämneskategori
Cell- och molekylärbiologi
Forskningsämne
medicinsk biokemi; molekylärbiologi
Identifikatorer
urn:nbn:se:umu:diva-215662 (URN)9789180702027 (ISBN)9789180702034 (ISBN)
Disputation
2023-11-22, KBE301, KBC-huset, Linnaeus väg 4, Umeå, 09:00 (Engelska)
Opponent
Handledare
Tillgänglig från: 2023-11-01 Skapad: 2023-10-24 Senast uppdaterad: 2023-10-26Bibliografiskt granskad

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Larsson, MiriamUvell, HannaRydén, PatrikBjörklund, Stefan

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Larsson, MiriamUvell, HannaRydén, PatrikBjörklund, Stefan
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Institutionen för medicinsk kemi och biofysikInstitutionen för matematik och matematisk statistik
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Medicinsk bioteknologi (med inriktning mot cellbiologi (inklusive stamcellsbiologi), molekylärbiologi, mikrobiologi, biokemi eller biofarmaci)

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