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Nucleic Acids Research|April 22, 2015
Dissecting the nascent human transcriptome by analysing the RNA content of transcription factoriesMaïwen Caudron-Herger, Peter R Cook, Karsten Rippe, et al.
Macromolecular Bioscience|February 19, 2013
Polymers for the cell-specific immobilisation of megakaryocytic cell linesAnne Hansen, Samuel Corless, Alexander Cleland, et al.
The Journal of Cell Biology|March 18, 2021
Parameter-free molecular super-structures quantification in single-molecule localization microscopyMattia Marenda, Elena Lazarova, Sebastian van de Linde, et al.
Human Mutation|May 28, 2010
Assessment of complement C4 gene copy number using the paralog ratio testMichelle M A Fernando, Lora Boteva, David L Morris, et al.
Plos One|July 7, 2012
T7 RNA polymerase functions in vitro without clusteringKieran Finan, Joseph P Torella, Achillefs N Kapanidis, et al.
The Journal of Cell Biology|May 9, 2007
DNA methylation affects nuclear organization, histone modifications, and linker histone binding but not chromatin compactionNick Gilbert, Inga Thomson, Shelagh Boyle, et al.
Cell|May 14, 2024
Vertebrate centromeres in mitosis are functionally bipartite structures stabilized by cohesinCarlos Sacristan, Kumiko Samejima, Lorena Andrade Ruiz, et al.
Journal of Cell Science|May 23, 2008
RNA polymerase II activity is located on the surface of protein-rich transcription factoriesChristopher H Eskiw, Alexander Rapp, David R F Carter, et al.
Chromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|April 30, 2005
Different populations of RNA polymerase II in living mammalian cellsMiki Hieda, Henry Winstanley, Philip Maini, et al.
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|April 12, 2006
Geometry of proteins: hydrogen bonding, sterics, and marginally compact tubesJayanth R Banavar, Marek Cieplak, Alessandro Flammini, et al.
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