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Skeletal Muscle|September 7, 2016
Six1 homeoprotein drives myofiber type IIA specialization in soleus muscleIori Sakakibara, Maud Wurmser, Matthieu Dos Santos, et al.Nature Communications|October 10, 2020
Single-nucleus RNA-seq and FISH identify coordinated transcriptional activity in mammalian myofibersMatthieu Dos Santos, Stéphanie Backer, Benjamin Saintpierre, et al.Developmental Biology|December 8, 2009
Six1 and Six4 gene expression is necessary to activate the fast-type muscle gene program in the mouse primary myotomeClaire Niro, Josiane Demignon, Stéphane Vincent, et al.Differentiation; Research in Biological Diversity|October 9, 2002
Fiber-type specific and position-dependent expression of a transgene in limb musclesFrançois Spitz, Laïla Benbacer, Jean Christophe Sabourin, et al.Cilia|May 15, 2015
The more we know, the more we have to discover: an exciting future for understanding cilia and ciliopathiesAlexandre Benmerah, Bénédicte Durand, Rachel H Giles, et al.The Journal of Cell Biology|September 5, 2012
Six1 regulates stem cell repair potential and self-renewal during skeletal muscle regenerationFabien Le Grand, Raphaëlle Grifone, Philippos Mourikis, et al.Journal of Muscle Research and Cell Motility|December 26, 2002
Six and Eya expression during human somitogenesis and MyoD gene family activationFrançoise Fougerousse, Muriel Durand, Soledad Lopez, et al.Developmental Biology|August 16, 2017
Engrailed controls epaxial-hypaxial muscle innervation and the establishment of vertebrate three-dimensional mobilityMohi U Ahmed, Ashish K Maurya, Louise Cheng, et al.Nucleic Acids Research|June 16, 2016
MyoD reprogramming requires Six1 and Six4 homeoproteins: genome-wide cis-regulatory module analysisMarc Santolini, Iori Sakakibara, Morgane Gauthier, et al.Development (Cambridge, England)|April 5, 2023
Dysfunction of programmed embryo senescence is linked to genetic developmental defectsCristina de Lope, Rebeca García-Lucena, Marta Magariños, et al.Pageof 9