Publications of P. Cramer
All genres
Journal Article (288)
141.
Journal Article
61 (2), pp. 305 - 314 (2016)
Heptad-specific phosphorylation of RNA polymerase II CTD. Molecular Cell 142.
Journal Article
83 (10), pp. 1849 - 1858 (2015)
Structure of Ctk3, a subunit of the RNA polymerase II CTD kinase complex, reveals a non-canonical CTD-interacting domain fold. Proteins: Structure, Function, and Bioinformatics 143.
Journal Article
71 (9), pp. 1850 - 1855 (2015)
An alternative RNA polymerase I structure reveals a dimer hinge. Acta Crystallographica D 144.
Journal Article
58 (6), pp. 1079 - 1089 (2015)
Molecular basis of transcription-coupled pre-mRNA capping. Molecular Cell 145.
Journal Article
43 (7), pp. 3726 - 3735 (2015)
A model for transcription initiation in human mitochondria. Nucleic Acids Research 146.
Journal Article
16 (3), pp. 129 - 143 (2015)
Structural basis of transcription initiation by RNA polymerase II. Nature Reviews Molecular Cell Biology 147.
Journal Article
518 (7539), pp. 376 - 380 (2015)
Architecture of the RNA polymerase II–Mediator core initiation complex. Nature 148.
Journal Article
25 (2), pp. 155 - 166 (2015)
BRF1 mutations alter RNA polymerase III-dependent transcription and cause neurodevelopmental anomalies. Genome Research 149.
Journal Article
10 (12), 768 (2014)
Annotation of genomics data using bidirectional hidden Markov models unveils variations in Pol II transcription cycle. Molecular Systems Biology 150.
Journal Article
159 (5), pp. 985 - 994 (2014)
A tale of chromatin and transcription in 100 structures. Cell 151.
Journal Article
55 (5), pp. 745 - 757 (2014)
Transcriptome maps of mRNP biogenesis factors define pre-mRNA recognition. Molecular Cell 152.
Journal Article
55 (3), pp. 467 - 481 (2014)
Molecular basis for coordinating transcription termination with noncoding RNA degradation. Molecular Cell 153.
Journal Article
5, 4310 (2014)
Conserved architecture of the core RNA polymerase II initiation complex. Nature Communications 154.
Journal Article
9 (6), e100736 (2014)
Structure-based prediction of asparagine and aspartate degradation sites in antibody variable regions. PLoS One 155.
Journal Article
289 (25), pp. 17446 - 17452 (2014)
Rpb4 functions mainly in mRNA synthesis by RNA polymerase II. Journal of Biological Chemistry 156.
Journal Article
42 (6), pp. 4043 - 4055 (2014)
Scp160p is required for translational efficiency of codon-optimized mRNAs in yeast. Nucleic Acids Research 157.
Journal Article
42 (6), pp. 3884 - 3893 (2014)
A novel intermediate in transcription initiation by human mitochondrial RNA polymerase. Nucleic Acids Research 158.
Journal Article
21 (2), pp. 175 - 179 (2014)
RNA polymerase II termination involves C-terminal-domain tyrosine dephosphorylation by CPF subunit Glc7. Nature Structural and Molecular Biology 159.
Journal Article
10 (1), 717 (2014)
Periodic mRNA synthesis and degradation co-operate during cell cycle gene expression. Molecular Systems Biology 160.
Journal Article
9 (11), e1003914 (2013)
Recruitment of TREX to the transcription machinery by its direct binding to the phospho-CTD of RNA polymerase II. PLoS Genetics