about
Genome-Wide Binding of Posterior HOXA/D Transcription Factors Reveals Subgrouping and Association with CTCF.Characterization of hundreds of regulatory landscapes in developing limbs reveals two regimes of chromatin foldingIntegration of Shh and Fgf signaling in controlling Hox gene expression in cultured limb cells.A switch between topological domains underlies HoxD genes collinearity in mouse limbs.SnapShot: Hox gene regulation.Formation of new chromatin domains determines pathogenicity of genomic duplications.The three-dimensional genome: regulating gene expression during pluripotency and development.Large genomic insertion at the Shh locus results in hammer toes through enhancer adoption.Attenuated sensing of SHH by Ptch1 underlies evolution of bovine limbs.CRISPR/Cas9 Genome Editing in Embryonic Stem Cells.Polymer physics predicts the effects of structural variants on chromatin architecture.Deletions, Inversions, Duplications: Engineering of Structural Variants using CRISPR/Cas in Mice.Dynamic 3D chromatin architecture contributes to enhancer specificity and limb morphogenesisCONSERVATION AND VARIATIONS OF BIMODAL HoxD GENE REGULATION DURING TETRAPOD LIMB DEVELOPMENTSimilarities and differences in the regulation of HoxD genes during chick and mouse limb developmentSerial genomic inversions induce tissue-specific architectural stripes, gene misexpression and congenital malformations
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description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Guillaume Andrey
@ast
Guillaume Andrey
@en
Guillaume Andrey
@es
Guillaume Andrey
@nl
Guillaume Andrey
@sl
type
label
Guillaume Andrey
@ast
Guillaume Andrey
@en
Guillaume Andrey
@es
Guillaume Andrey
@nl
Guillaume Andrey
@sl
prefLabel
Guillaume Andrey
@ast
Guillaume Andrey
@en
Guillaume Andrey
@es
Guillaume Andrey
@nl
Guillaume Andrey
@sl
P106
P1153
55759400900
P31
P496
0000-0002-0911-4907