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Patrick Cramer

Showing results (141-150 of 280) with videos related to

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Molecular and Cellular Biology|February 1, 2012
The spt5 C-terminal region recruits yeast 3' RNA cleavage factor IAndreas Mayer, Amelie Schreieck, Michael Lidschreiber, et al.
Molecular Cell|July 15, 2021
Allosteric transcription stimulation by RNA polymerase II super elongation complexYing Chen, Seychelle M Vos, Christian Dienemann, et al.
Molecular Cell|July 5, 2006
Structural biology of RNA polymerase III: subcomplex C17/25 X-ray structure and 11 subunit enzyme modelAnna J Jasiak, Karim-Jean Armache, Birgit Martens, et al.
Molecular Systems Biology|January 12, 2022
Distinct transcription kinetics of pluripotent cell statesRui Shao, Banushree Kumar, Katja Lidschreiber, et al.
Molecular Cell|June 27, 2023
Structural insights into human co-transcriptional cappingGaurika Garg, Christian Dienemann, Lucas Farnung, et al.
Molecular Microbiology|February 3, 2009
The archaeal RNA polymerase subunit P and the eukaryotic polymerase subunit Rpb12 are interchangeable in vivo and in vitroChristoph Reich, Mirijam Zeller, Philipp Milkereit, et al.
Cell|October 5, 2010
Molecular basis of RNA polymerase III transcription repression by Maf1Alessandro Vannini, Rieke Ringel, Anselm G Kusser, et al.
Nucleic Acids Research|January 22, 2014
Scp160p is required for translational efficiency of codon-optimized mRNAs in yeastWolf D Hirschmann, Heidrun Westendorf, Andreas Mayer, 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.
Nature|January 24, 2020
Structure of the transcription coactivator SAGAHaibo Wang, Christian Dienemann, Alexandra Stützer, et al.
Pageof 28

Showing results (141-150 of 280) with videos related to

Sort By:
Pageof 28
Molecular and Cellular Biology|February 1, 2012
The spt5 C-terminal region recruits yeast 3' RNA cleavage factor IAndreas Mayer, Amelie Schreieck, Michael Lidschreiber, et al.
Molecular Cell|July 15, 2021
Allosteric transcription stimulation by RNA polymerase II super elongation complexYing Chen, Seychelle M Vos, Christian Dienemann, et al.
Molecular Cell|July 5, 2006
Structural biology of RNA polymerase III: subcomplex C17/25 X-ray structure and 11 subunit enzyme modelAnna J Jasiak, Karim-Jean Armache, Birgit Martens, et al.
Molecular Systems Biology|January 12, 2022
Distinct transcription kinetics of pluripotent cell statesRui Shao, Banushree Kumar, Katja Lidschreiber, et al.
Molecular Cell|June 27, 2023
Structural insights into human co-transcriptional cappingGaurika Garg, Christian Dienemann, Lucas Farnung, et al.
Molecular Microbiology|February 3, 2009
The archaeal RNA polymerase subunit P and the eukaryotic polymerase subunit Rpb12 are interchangeable in vivo and in vitroChristoph Reich, Mirijam Zeller, Philipp Milkereit, et al.
Cell|October 5, 2010
Molecular basis of RNA polymerase III transcription repression by Maf1Alessandro Vannini, Rieke Ringel, Anselm G Kusser, et al.
Nucleic Acids Research|January 22, 2014
Scp160p is required for translational efficiency of codon-optimized mRNAs in yeastWolf D Hirschmann, Heidrun Westendorf, Andreas Mayer, 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.
Nature|January 24, 2020
Structure of the transcription coactivator SAGAHaibo Wang, Christian Dienemann, Alexandra Stützer, et al.
Pageof 28