PerlPrimer: cross-platform, graphical primer design for standard, bisulphite and real-time PCR OJ Marshall Bioinformatics 20 (15), 2471-2472, 2004 | 813 | 2004 |
Neocentromeres: new insights into centromere structure, disease development, and karyotype evolution OJ Marshall, AC Chueh, LH Wong, KHA Choo The American Journal of Human Genetics 82 (2), 261-282, 2008 | 411 | 2008 |
Active transcription and essential role of RNA polymerase II at the centromere during mitosis FL Chan, OJ Marshall, R Saffery, BO Won Kim, E Earle, KHA Choo, ... Proceedings of the National Academy of Sciences 109 (6), 1979-1984, 2012 | 293 | 2012 |
Cell-type-specific profiling of gene expression and chromatin binding without cell isolation: assaying RNA Pol II occupancy in neural stem cells TD Southall, KS Gold, B Egger, CM Davidson, EE Caygill, OJ Marshall, ... Developmental cell 26 (1), 101-112, 2013 | 227 | 2013 |
Contrasting roles of condensin I and condensin II in mitotic chromosome formation LC Green, P Kalitsis, TM Chang, M Cipetic, JH Kim, O Marshall, L Turnbull, ... Journal of cell science 125 (6), 1591-1604, 2012 | 207 | 2012 |
The architecture and evolution of cancer neochromosomes DW Garsed, OJ Marshall, VDA Corbin, A Hsu, L Di Stefano, J Schröder, ... Cancer cell 26 (5), 653-667, 2014 | 193 | 2014 |
damidseq_pipeline: an automated pipeline for processing DamID sequencing datasets OJ Marshall, AH Brand Bioinformatics 31 (20), 3371-3373, 2015 | 133 | 2015 |
Cell-type-specific profiling of protein–DNA interactions without cell isolation using targeted DamID with next-generation sequencing OJ Marshall, TD Southall, SW Cheetham, AH Brand Nature protocols 11 (9), 1586-1598, 2016 | 124 | 2016 |
Chromatin state changes during neural development revealed by in vivo cell-type specific profiling OJ Marshall, AH Brand Nature Communications 8 (1), 2271, 2017 | 84 | 2017 |
Three-dimensional localization of CENP-A suggests a complex higher order structure of centromeric chromatin OJ Marshall, AT Marshall, KHA Choo The Journal of cell biology 183 (7), 1193-1202, 2008 | 80 | 2008 |
Molecular mechanisms of SOX9 action OJ Marshall, VR Harley Molecular genetics and metabolism 71 (3), 455-462, 2000 | 66 | 2000 |
Drosophila intestinal stem and progenitor cells are major sources and regulators of homeostatic niche signals DP Doupé, OJ Marshall, H Dayton, AH Brand, N Perrimon Proceedings of the National Academy of Sciences 115 (48), 12218-12223, 2018 | 64 | 2018 |
Identification of an interaction between SOX9 and HSP70 OJ Marshall, VR Harley FEBS letters 496 (2-3), 75-80, 2001 | 48 | 2001 |
Stem cell proliferation is kept in check by the chromatin regulators Kismet/CHD7/CHD8 and Trr/MLL3/4 L Gervais, M van den Beek, M Josserand, J Sallé, M Stefanutti, ... Dev Cell 49 (4), 556-573, 2019 | 32 | 2019 |
Graphical design of primers with PerlPrimer O Marshall PCR Primer Design, 403-414, 2007 | 28 | 2007 |
Stem cell niche organization in the Drosophila ovary requires the ECM component Perlecan A Díaz-Torres, AE Rosales-Nieves, JR Pearson, CSC Mateos, ... Current Biology 31 (8), 1744-1753. e5, 2021 | 24 | 2021 |
Putative CENP-B paralogues are not present at mammalian centromeres OJ Marshall, KHA Choo Chromosoma 121, 169-179, 2012 | 17 | 2012 |
A KDM5–Prospero transcriptional axis functions during early neurodevelopment to regulate mushroom body formation HAM Hatch, HM Belalcazar, OJ Marshall, J Secombe Elife 10, e63886, 2021 | 15 | 2021 |
Neocentromeres come of age OJ Marshall, KHA Choo PLoS genetics 5 (3), e1000370, 2009 | 12 | 2009 |
United colours of chromatin? Developmental genome organisation in flies C Delandre, OJ Marshall Biochemical Society Transactions 47 (2), 691-700, 2019 | 9 | 2019 |