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Nature Communications|August 11, 2019
The pause-initiation limit restricts transcription activation in human cellsSaskia Gressel, Björn Schwalb, Patrick CramerGenome Research|September 5, 2020
Native molecule sequencing by nano-ID reveals synthesis and stability of RNA isoformsKerstin C Maier, Saskia Gressel, Patrick Cramer, et al.G3 (Bethesda, Md.)|March 7, 2022
RNA transcription and degradation of Alu retrotransposons depends on sequence features and evolutionary historyTill Baar, Sebastian Dümcke, Saskia Gressel, et al.Elife|October 11, 2017
CDK9-dependent RNA polymerase II pausing controls transcription initiationSaskia Gressel, Björn Schwalb, Tim Michael Decker, et al.Molecular Cell|November 26, 2018
Promoter Distortion and Opening in the RNA Polymerase II CleftChristian Dienemann, Björn Schwalb, Sandra Schilbach, et al.Nature Structural & Molecular Biology|February 11, 2025
Promoter-proximal RNA polymerase II termination regulates transcription during human cell type transitionKseniia Lysakovskaia, Arjun Devadas, Björn Schwalb, et al.Molecular Cell|September 6, 2014
Transcriptome maps of mRNP biogenesis factors define pre-mRNA recognitionCarlo Baejen, Phillipp Torkler, Saskia Gressel, et al.Plos One|January 6, 2017
Accurate Promoter and Enhancer Identification in 127 ENCODE and Roadmap Epigenomics Cell Types and Tissues by GenoSTANBenedikt Zacher, Margaux Michel, Björn Schwalb, et al.The EMBO Journal|February 8, 2021
Transcription activation depends on the length of the RNA polymerase II C-terminal domainAnna Sawicka, Gabriel Villamil, Michael Lidschreiber, et al.Molecular Systems Biology|March 9, 2017
TT-seq captures enhancer landscapes immediately after T-cell stimulationMargaux Michel, Carina Demel, Benedikt Zacher, et al.Pageof 27