A novel genetic hierarchy functions during hypaxial myogenesis: Pax3 directly activates Myf5 in muscle progenitor cells in the limb L Bajard, F Relaix, M Lagha, D Rocancourt, P Daubas, ME Buckingham Genes & development 20 (17), 2450-2464, 2006 | 269 | 2006 |
Paused Pol II Coordinates Tissue Morphogenesis in the Drosophila Embryo M Lagha, JP Bothma, E Esposito, S Ng, L Stefanik, C Tsui, J Johnston, ... Cell 153 (5), 976-987, 2013 | 139 | 2013 |
Pax3 regulation of FGF signaling affects the progression of embryonic progenitor cells into the myogenic program M Lagha, JD Kormish, D Rocancourt, M Manceau, JA Epstein, KS Zaret, ... Genes & development 22 (13), 1828-1837, 2008 | 138 | 2008 |
Mechanisms of transcriptional precision in animal development M Lagha, JP Bothma, M Levine Trends in genetics 28 (8), 409-416, 2012 | 110 | 2012 |
Regulation of skeletal muscle stem cell behavior by Pax3 and Pax7 M Lagha, T Sato, L Bajard, P Daubas, M Esner, D Montarras, F Relaix, ... Cold Spring Harbor symposia on quantitative biology 73, 307-315, 2008 | 77 | 2008 |
Pax3:Foxc2 Reciprocal Repression in the Somite Modulates Muscular versus Vascular Cell Fate Choice in Multipotent Progenitors M Lagha, S Brunelli, G Messina, A Cumano, T Kume, F Relaix, ... Developmental cell 17 (6), 892-899, 2009 | 76 | 2009 |
Microscopy-based chromosome conformation capture enables simultaneous visualization of genome organization and transcription in intact organisms AMC Gizzi, DI Cattoni, JB Fiche, SM Espinola, J Gurgo, O Messina, ... Molecular cell 74 (1), 212-222. e5, 2019 | 69 | 2019 |
Myogenic progenitor cells in the mouse embryo are marked by the expression of Pax3/7 genes that regulate their survival and myogenic potential M Buckingham, L Bajard, P Daubas, M Esner, M Lagha, F Relaix, ... Anatomy and embryology 211 (1), 51-56, 2006 | 67 | 2006 |
A growing toolbox to image gene expression in single cells: sensitive approaches for demanding challenges X Pichon, M Lagha, F Mueller, E Bertrand Molecular cell 71 (3), 468-480, 2018 | 63 | 2018 |
Six homeoproteins directly activate Myod expression in the gene regulatory networks that control early myogenesis F Relaix, J Demignon, C Laclef, J Pujol, M Santolini, C Niro, M Lagha, ... PLoS Genet 9 (4), e1003425, 2013 | 63 | 2013 |
Transcriptional memory in the Drosophila embryo T Ferraro, E Esposito, L Mancini, S Ng, T Lucas, M Coppey, N Dostatni, ... Current Biology 26 (2), 212-218, 2016 | 49 | 2016 |
Temporal control of gene expression by the pioneer factor Zelda through transient interactions in hubs J Dufourt, A Trullo, J Hunter, C Fernandez, J Lazaro, M Dejean, L Morales, ... Nature communications 9 (1), 1-13, 2018 | 45 | 2018 |
Notch regulation of myogenic versus endothelial fates of cells that migrate from the somite to the limb A Mayeuf-Louchart, M Lagha, A Danckaert, D Rocancourt, F Relaix, ... Proceedings of the National Academy of Sciences 111 (24), 8844-8849, 2014 | 42 | 2014 |
Notch1 acts via Foxc2 to promote definitive hematopoiesis via effects on hemogenic endothelium IH Jang, YF Lu, L Zhao, PL Wenzel, T Kume, SM Datta, N Arora, J Guiu, ... Blood, The Journal of the American Society of Hematology 125 (9), 1418-1426, 2015 | 40 | 2015 |
Transcriptome analyses based on genetic screens for Pax3 myogenic targets in the mouse embryo M Lagha, T Sato, B Regnault, A Cumano, A Zuniga, J Licht, F Relaix, ... BMC genomics 11 (1), 696, 2010 | 35 | 2010 |
Itm2a is a Pax3 target gene, expressed at sites of skeletal muscle formation in vivo M Lagha, A Mayeuf-Louchart, T Chang, D Montarras, D Rocancourt, ... PLoS One 8 (5), e63143, 2013 | 17 | 2013 |
Pax3/Pax7-dependent population of skeletal muscle progenitor cells M Lagha, D Rocancourt, F Relaix Medecine sciences: M/S 21 (10), 801, 2005 | 9 | 2005 |
Remembering the past: Mitotic bookmarking in a developing embryo M Bellec, O Radulescu, M Lagha Current Opinion in Systems Biology 11, 41-49, 2018 | 6 | 2018 |
Lighting Up Gene Activation in Living Drosophila Embryos C Fernandez, M Lagha Imaging Gene Expression, 63-74, 2019 | 5 | 2019 |
Cis-regulatory chromatin loops arise before TADs and gene activation, and are independent of cell fate during development S Espinola, M Götz, JB Fiche, M Bellec, C Houbron, AC Gizzi, M Lagha, ... | 1 | 2020 |