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Nature Communications|August 6, 2015
An epigenetic regulator emerges as microtubule minus-end binding and stabilizing factor in mitosisSylvain Meunier, Maria Shvedunova, Nhuong Van Nguyen, et al.
Journal of Medicinal Chemistry|February 21, 2019
Cofactor Analogues as Active Site Probes in Lysine AcetyltransferasesRoman P Simon, Tobias Rumpf, Vaida Linkuviene, et al.
Proteomics|November 23, 2005
A general precursor ion-like scanning mode on quadrupole-TOF instruments compatible with chromatographic separationRicarda Niggeweg, Thomas Köcher, Marc Gentzel, et al.
Plos Genetics|February 23, 2010
Nuclear pore proteins nup153 and megator define transcriptionally active regions in the Drosophila genomeJuan M Vaquerizas, Ritsuko Suyama, Jop Kind, et al.
Science (New York, N.Y.)|April 20, 2013
Response to Comments on "Drosophila Dosage Compensation Involves Enhanced Pol II Recruitment to Male X-Linked Promoters"Juan M Vaquerizas, Florence M G Cavalli, Thomas Conrad, et al.
The EMBO Journal|May 14, 2004
Functional integration of the histone acetyltransferase MOF into the dosage compensation complexViolette Morales, Tobias Straub, Martin F Neumann, et al.
Molecular and Cellular Biology|July 19, 2005
hMOF histone acetyltransferase is required for histone H4 lysine 16 acetylation in mammalian cellsMikko Taipale, Stephen Rea, Karsten Richter, et al.
Genes & Development|October 26, 2017
A mutually exclusive stem-loop arrangement in roX2 RNA is essential for X-chromosome regulation in DrosophilaIbrahim Avsar Ilik, Daniel Maticzka, Plamen Georgiev, et al.
Science (New York, N.Y.)|July 24, 2012
Drosophila dosage compensation involves enhanced Pol II recruitment to male X-linked promotersThomas Conrad, Florence M G Cavalli, Juan M Vaquerizas, et al.
Cell Reports|August 29, 2024
MOF-mediated PRDX1 acetylation regulates inflammatory macrophage activationHui-Ru Chen, Yidan Sun, Gerhard Mittler, et al.
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