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Proceedings of the National Academy of Sciences of the United States of America|October 7, 2004
Cup is a nucleocytoplasmic shuttling protein that interacts with the eukaryotic translation initiation factor 4E to modulate Drosophila ovary developmentVincenzo Zappavigna, Federica Piccioni, J Carlos Villaescusa, et al.Developmental Biology|April 15, 2008
Hoxd13 binds in vivo and regulates the expression of genes acting in key pathways for early limb and skeletal patterningValentina Salsi, Maria Alessandra Vigano, Fabienne Cocchiarella, et al.Biochimica Et Biophysica Acta|July 5, 2015
MicroRNA-196b is transcribed from an autonomous promoter and is directly regulated by Cdx2 and by posterior Hox proteins during embryogenesisSebastian Fantini, Valentina Salsi, Antonio Vitobello, et al.BMC Cell Biology|December 23, 2004
MAB21L2, a vertebrate member of the Male-abnormal 21 family, modulates BMP signaling and interacts with SMAD1Danila Baldessari, Aurora Badaloni, Renato Longhi, et al.Human Molecular Genetics|December 9, 2008
A G220V substitution within the N-terminal transcription regulating domain of HOXD13 causes a variant synpolydactyly phenotypeSebastian Fantini, Giulia Vaccari, Nathalie Brison, et al.Molecular and Cellular Biology|August 26, 2009
HOXD13 binds DNA replication origins to promote origin licensing and is inhibited by gemininValentina Salsi, Silvia Ferrari, Roberta Ferraresi, et al.Development (Cambridge, England)|March 7, 2003
An I47L substitution in the HOXD13 homeodomain causes a novel human limb malformation by producing a selective loss of functionGiuliana Caronia, Frances R Goodman, Carole M E McKeown, et al.Cancer Research|December 28, 2013
NUP98 fusion oncoproteins promote aneuploidy by attenuating the mitotic spindle checkpointValentina Salsi, Silvia Ferrari, Paolo Gorello, et al.Human Molecular Genetics|March 1, 2012
An N-terminal G11A mutation in HOXD13 causes synpolydactyly and interferes with Gli3R function during limb pre-patterningNathalie Brison, Philippe Debeer, Sebastian Fantini, et al.Development (Cambridge, England)|May 5, 2006
Pbx1/Pbx2 requirement for distal limb patterning is mediated by the hierarchical control of Hox gene spatial distribution and Shh expressionTerence D Capellini, Giuseppina Di Giacomo, Valentina Salsi, et al.Pageof 3