Marie Kmita

Hox genes, axis formation
"Marie Kmita"
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Roux M, Bouchard M, Kmita M. (2019) Multifaceted Hoxa13 function in urogenital development underlies the Hand-Foot-Genital Syndrome. Human Molecular Genetics
Kherdjemil Y, Kmita M. (2017) Insights on the role of hox genes in the emergence of the pentadactyl ground state. Genesis (New York, N.Y. : 2000)
Kherdjemil Y, Lalonde RL, Sheth R, et al. (2016) Evolution of Hoxa11 regulation in vertebrates is linked to the pentadactyl state. Nature
Scotti M, Kherdjemil Y, Roux M, et al. (2015) A Hoxa13:Cre mouse strain for conditional gene manipulation in developing limb, hindgut, and urogenital system. Genesis (New York, N.Y. : 2000). 53: 366-76
Grégoire D, Kmita M. (2014) Genetic cell ablation. Methods in Molecular Biology (Clifton, N.J.). 1092: 421-36
Sheth R, Bastida MF, Kmita M, et al. (2014) "Self-regulation," a new facet of Hox genes' function. Developmental Dynamics : An Official Publication of the American Association of Anatomists. 243: 182-91
Berlivet S, Paquette D, Dumouchel A, et al. (2013) Clustering of tissue-specific sub-TADs accompanies the regulation of HoxA genes in developing limbs. Plos Genetics. 9: e1004018
Langlais D, Couture C, Kmita M, et al. (2013) Adult pituitary cell maintenance: lineage-specific contribution of self-duplication. Molecular Endocrinology (Baltimore, Md.). 27: 1103-12
Sheth R, Grégoire D, Dumouchel A, et al. (2013) Decoupling the function of Hox and Shh in developing limb reveals multiple inputs of Hox genes on limb growth. Development (Cambridge, England). 140: 2130-8
Sheth R, Marcon L, Bastida MF, et al. (2012) Hox genes regulate digit patterning by controlling the wavelength of a Turing-type mechanism. Science (New York, N.Y.). 338: 1476-80
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