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Daiß, Julia L. ; Pilsl, Michael ; Straub, Kristina ; Bleckmann, Andrea ; Höcherl, Mona ; Heiss, Florian B. ; Abascal-Palacios, Guillermo ; Ramsay, Ewan Phillip ; Tlučková, Katarina ; Mars, Jean-Clement ; Fürtges, Torben ; Bruckmann, Astrid ; Rudack, Till ; Bernecky, Carrie ; Lamour, Valérie ; Panov, Konstantin ; Vannini, Alessandro ; Moss, Tom ; Engel, Christoph

The human RNA polymerase I structure reveals an HMG-like docking domain specific to metazoans

Daiß, Julia L., Pilsl, Michael, Straub, Kristina , Bleckmann, Andrea , Höcherl, Mona, Heiss, Florian B. , Abascal-Palacios, Guillermo , Ramsay, Ewan Phillip, Tlučková, Katarina, Mars, Jean-Clement, Fürtges, Torben, Bruckmann, Astrid , Rudack, Till, Bernecky, Carrie, Lamour, Valérie, Panov, Konstantin , Vannini, Alessandro , Moss, Tom und Engel, Christoph (2022) The human RNA polymerase I structure reveals an HMG-like docking domain specific to metazoans. Life Science Alliance 5 (11), e202201568.

Veröffentlichungsdatum dieses Volltextes: 09 Sep 2022 12:41
Artikel
DOI zum Zitieren dieses Dokuments: 10.5283/epub.52860


Zusammenfassung

Transcription of the ribosomal RNA precursor by RNA polymerase (Pol) I is a major determinant of cellular growth, and dysregulation is observed in many cancer types. Here, we present the purification of human Pol I from cells carrying a genomic GFP fusion on the largest subunit allowing the structural and functional analysis of the enzyme across species. In contrast to yeast, human Pol I carries ...

Transcription of the ribosomal RNA precursor by RNA polymerase (Pol) I is a major determinant of cellular growth, and dysregulation is observed in many cancer types. Here, we present the purification of human Pol I from cells carrying a genomic GFP fusion on the largest subunit allowing the structural and functional analysis of the enzyme across species. In contrast to yeast, human Pol I carries a single-subunit stalk, and in vitro transcription indicates a reduced proofreading activity. Determination of the human Pol I cryo-EM reconstruction in a close-to-native state rationalizes the effects of disease-associated mutations and uncovers an additional domain that is built into the sequence of Pol I subunit RPA1. This "dock II" domain resembles a truncated HMG box incapable of DNA binding which may serve as a downstream transcription factor-binding platform in metazoans. Biochemical analysis, in situ modelling, and ChIP data indicate that Topoisomerase 2a can be recruited to Pol I via the domain and cooperates with the HMG box domain-containing factor UBF. These adaptations of the metazoan Pol I transcription system may allow efficient release of positive DNA supercoils accumulating downstream of the transcription bubble.



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Details

DokumentenartArtikel
Titel eines Journals oder einer ZeitschriftLife Science Alliance
Verlag:EMBO Press
Ort der Veröffentlichung:COLD SPRING HARBOR
Band:5
Nummer des Zeitschriftenheftes oder des Kapitels:11
Seitenbereich:e202201568
Datum1 September 2022
InstitutionenBiologie und Vorklinische Medizin > Institut für Biophysik und physikalische Biochemie > Prof. Dr. Till Rudack
Biologie und Vorklinische Medizin > Institut für Biochemie, Genetik und Mikrobiologie
Identifikationsnummer
WertTyp
10.26508/lsa.202201568DOI
Stichwörter / KeywordsUPSTREAM BINDING-FACTOR; PROTEIN-PROTEIN INTERACTIONS; CRYO-EM STRUCTURES; TRANSCRIPTION FACTOR; MOLECULAR-STRUCTURES; TIF-IA; INITIATION; SUBUNITS; YEAST; MECHANISMS
Dewey-Dezimal-Klassifikation500 Naturwissenschaften und Mathematik > 570 Biowissenschaften, Biologie
StatusVeröffentlicht
BegutachtetJa, diese Version wurde begutachtet
An der Universität Regensburg entstandenZum Teil
URN der UB Regensburgurn:nbn:de:bvb:355-epub-528607
Dokumenten-ID52860

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