Christopher T. Workman
Christopher T. Workman
Technical University of Denmark, Department of Biotechnology and Biomedicine
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Cited by
Cited by
Integration of biological networks and gene expression data using Cytoscape
MS Cline, M Smoot, E Cerami, A Kuchinsky, N Landys, C Workman, ...
Nature protocols 2 (10), 2366-2382, 2007
Assessing computational tools for the discovery of transcription factor binding sites
M Tompa, N Li, TL Bailey, GM Church, B De Moor, E Eskin, AV Favorov, ...
Nature biotechnology 23 (1), 137-144, 2005
A new non-linear normalization method for reducing variability in DNA microarray experiments
C Workman, LJ Jensen, H Jarmer, R Berka, L Gautier, HB Nielser, ...
Genome biology 3, 1-16, 2002
Synthesis, deprotection, analysis and purification of RNA and ribosomes
F Wincott, A DiRenzo, C Shaffer, S Grimm, D Tracz, C Workman, ...
Nucleic acids research 23 (14), 2677-2684, 1995
Modeling regulatory networks with weight matrices
DC Weaver, CT Workman, GD Stormo
Biocomputing'99, 112-123, 1999
A scored human protein–protein interaction network to catalyze genomic interpretation
T Li, R Wernersson, RB Hansen, H Horn, J Mercer, G Slodkowicz, ...
Nature methods 14 (1), 61-64, 2017
Obesity and bariatric surgery drive epigenetic variation of spermatozoa in humans
I Donkin, S Versteyhe, LR Ingerslev, K Qian, M Mechta, L Nordkap, ...
Cell metabolism 23 (2), 369-378, 2016
Prediction of human protein function from post-translational modifications and localization features
LJ Jensen, R Gupta, N Blom, D Devos, J Tamames, C Kesmir, H Nielsen, ...
Journal of molecular biology 319 (5), 1257-1265, 2002
Evolutionary dynamics of bacteria in a human host environment
L Yang, L Jelsbak, RL Marvig, S Damkiær, CT Workman, MH Rau, ...
Proceedings of the National Academy of Sciences 108 (18), 7481-7486, 2011
ANN-Spec: a method for discovering transcription factor binding sites with improved specificity
CT Workman, GD Stormo
Biocomputing 2000, 467-478, 1999
A systems approach to mapping DNA damage response pathways
CT Workman, HC Mak, S McCuine, JB Tagne, M Agarwal, O Ozier, ...
Science 312 (5776), 1054-1059, 2006
enoLOGOS: a versatile web tool for energy normalized sequence logos
CT Workman, Y Yin, DL Corcoran, T Ideker, GD Stormo, PV Benos
Nucleic acids research 33 (suppl_2), W389-W392, 2005
No evidence that mRNAs have lower folding free energies than random sequences with the same dinucleotide distribution
C Workman, A Krogh
Nucleic acids research 27 (24), 4816-4822, 1999
Inferring binding energies from selected binding sites
Y Zhao, D Granas, GD Stormo
PLoS computational biology 5 (12), e1000590, 2009
The human gut Firmicute Roseburia intestinalis is a primary degrader of dietary β-mannans
SL La Rosa, ML Leth, L Michalak, ME Hansen, NA Pudlo, R Glowacki, ...
Nature communications 10 (1), 905, 2019
15‐year follow‐up of the Second Nordic Mantle Cell Lymphoma trial (MCL 2): prolonged remissions without survival plateau
CW Eskelund, A Kolstad, M Jerkeman, R Räty, A Laurell, S Eloranta, ...
British journal of haematology 175 (3), 410-418, 2016
ATAF1 transcription factor directly regulates abscisic acid biosynthetic gene NCED3 in Arabidopsis thaliana
MK Jensen, S Lindemose, F De Masi, JJ Reimer, M Nielsen, V Perera, ...
FEBS open bio 3, 321-327, 2013
Identification of gene expression patterns in superficial and invasive human bladder cancer
T Thykjaer, C Workman, M Kruhøffer, K Demtröder, H Wolf, LD Andersen, ...
Cancer Research 61 (6), 2492-2499, 2001
Meta-analysis derived atopic dermatitis (MADAD) transcriptome defines a robust AD signature highlighting the involvement of atherosclerosis and lipid metabolism pathways
DA Ewald, D Malajian, JG Krueger, CT Workman, T Wang, S Tian, ...
BMC medical genomics 8, 1-15, 2015
Enrichment of regulatory signals in conserved non-coding genomic sequence
S Levy, S Hannenhalli, C Workman
Bioinformatics 17 (10), 871-877, 2001
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