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Michl-Holzinger, Philipp ; Obermeyer, Simon ; Markusch, Hanna ; Pfab, Alexander ; Ettner, Andreas ; Bruckmann, Astrid ; Babl, Sabrina ; Längst, Gernot ; Schwartz, Uwe ; Tvardovskiy, Andrey ; Jensen, Ole N. ; Osakabe, Akihisa ; Berger, Frédéric ; Grasser, Klaus D.

Phosphorylation of the FACT histone chaperone subunit SPT16 affects chromatin at RNA polymerase II transcriptional start sites in Arabidopsis

Michl-Holzinger, Philipp, Obermeyer, Simon, Markusch, Hanna, Pfab, Alexander, Ettner, Andreas, Bruckmann, Astrid, Babl, Sabrina, Längst, Gernot, Schwartz, Uwe, Tvardovskiy, Andrey, Jensen, Ole N. , Osakabe, Akihisa, Berger, Frédéric and Grasser, Klaus D. (2022) Phosphorylation of the FACT histone chaperone subunit SPT16 affects chromatin at RNA polymerase II transcriptional start sites in Arabidopsis. Nucleic Acids Research 50 (9), pp. 5014-5028.

Date of publication of this fulltext: 17 Aug 2022 09:12
Article
DOI to cite this document: 10.5283/epub.52757


Abstract

The heterodimeric histone chaperone FACT, consisting of SSRP1 and SPT16, contributes to dynamic nucleosome rearrangements during various DNA-dependent processes including transcription. In search of post-translational modifications that may regulate the activity of FACT, SSRP1 and SPT16 were isolated from Arabidopsis cells and analysed by mass spectrometry. Four acetylated lysine residues could ...

The heterodimeric histone chaperone FACT, consisting of SSRP1 and SPT16, contributes to dynamic nucleosome rearrangements during various DNA-dependent processes including transcription. In search of post-translational modifications that may regulate the activity of FACT, SSRP1 and SPT16 were isolated from Arabidopsis cells and analysed by mass spectrometry. Four acetylated lysine residues could be mapped within the basic C-terminal region of SSRP1, while three phosphorylated serine/threonine residues were identified in the acidic C-terminal region of SPT16. Mutational analysis of the SSRP1 acetylation sites revealed only mild effects. However, phosphorylation of SPT16 that is catalysed by protein kinase CK2, modulates histone interactions. A non-phosphorylatable version of SPT16 displayed reduced histone binding and proved inactive in complementing the growth and developmental phenotypes of spt16 mutant plants. In plants expressing the non-phosphorylatable SPT16 version we detected at a subset of genes enrichment of histone H3 directly upstream of RNA polymerase II transcriptional start sites (TSSs) in a region that usually is nucleosome-depleted. This suggests that some genes require phosphorylation of the SPT16 acidic region for establishing the correct nucleosome occupancy at the TSS of active genes.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitleNucleic Acids Research
Publisher:Oxford Univ. Press
Open Access Type:Gold (with APC)
Place of Publication:OXFORD
Volume:50
Number of Issue or Book Chapter:9
Page Range:pp. 5014-5028
Date30 April 2022
InstitutionsBiology, Preclinical Medicine > Institut für Pflanzenwissenschaften > Lehrstuhl für Zellbiologie und Pflanzenphysiologie (Prof. Dr. Klaus Grasser)
Biology, Preclinical Medicine > Institut für Biochemie, Genetik und Mikrobiologie > Lehrstuhl für Biochemie I
Biology, Preclinical Medicine > Institut für Biochemie, Genetik und Mikrobiologie > Lehrstuhl für Biochemie III > Prof. Dr. Gernot Längst
Identification Number
ValueType
10.1093/nar/gkac293DOI
KeywordsPROTEIN-KINASE CK2; INTRINSICALLY DISORDERED REGION; FACTORS REPRESS TRANSCRIPTION; MOBILITY GROUP BOX; DNA-BINDING; GENE-EXPRESSION; HMG DOMAIN; NUCLEOSOMAL DNA; PLANT-GROWTH; ELONGATION;
Dewey Decimal Classification500 Science > 570 Life sciences
500 Science > 580 Botanical sciences
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgYes
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-527577
Item ID52757

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