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Nature Communications|March 7, 2020
Structural basis of RNA polymerase I pre-initiation complex formation and promoter meltingMichael Pilsl, Christoph EngelMethods in Molecular Biology (Clifton, N.J.)|July 7, 2022
Structural Studies of Eukaryotic RNA Polymerase I Using Cryo-Electron MicroscopyMichael Pilsl, Christoph EngelPlos One|November 23, 2021
Analysis of subunit folding contribution of three yeast large ribosomal subunit proteins required for stabilisation and processing of intermediate nuclear rRNA precursorsGisela Pöll, Michael Pilsl, Joachim Griesenbeck, et al.Methods in Molecular Biology (Clifton, N.J.)|September 1, 2016
Analysis of S. cerevisiae RNA Polymerase I Transcription In VitroMichael Pilsl, Philipp E Merkl, Philipp Milkereit, et al.Methods in Molecular Biology (Clifton, N.J.)|July 7, 2022
Preparation of RNA Polymerase Complexes for Their Analysis by Single-Particle Cryo-Electron MicroscopyMichael Pilsl, Florian B Heiss, Gisela Pöll, et al.Nature Communications|August 23, 2025
4D structural biology-quantitative dynamics in the eukaryotic RNA exosome complexJobst Liebau, Daniela Lazzaretti, Torben Fürtges, et al.The Journal of Biological Chemistry|February 16, 2020
RNA polymerase I (Pol I) passage through nucleosomes depends on Pol I subunits binding its lobe structurePhilipp E Merkl, Michael Pilsl, Tobias Fremter, et al.Nature Communications|July 16, 2016
Structure of the initiation-competent RNA polymerase I and its implication for transcriptionMichael Pilsl, Corinne Crucifix, Gabor Papai, et al.Methods in Molecular Biology (Clifton, N.J.)|July 7, 2022
Establishment and Maintenance of Open Ribosomal RNA Gene Chromatin States in EukaryotesChristopher Schächner, Philipp E Merkl, Michael Pilsl, et al.Nucleic Acids Research|May 6, 2024
Structural basis of archaeal RNA polymerase transcription elongation and Spt4/5 recruitmentDaniela Tarău, Felix Grünberger, Michael Pilsl, et al.Pageof 2