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T Michael Underhill

Showing results (11-20 of 82) with videos related to

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Birth Defects Research. Part C, Embryo Today : Reviews|September 6, 2003
Revisiting the role of retinoid signaling in skeletal developmentAndrea D Weston, Lisa M Hoffman, T Michael Underhill
Nature Communications|August 25, 2022
Cellular taxonomy of Hic1<sup>+</sup> mesenchymal progenitor derivatives in the limb: from embryo to adultMartin Arostegui, R Wilder Scott, Kerstin Böse, et al.
BMC Molecular Biology|September 21, 2006
The transcription factor ATF3 is upregulated during chondrocyte differentiation and represses cyclin D1 and A gene transcriptionClaudine G James, Anita Woods, T Michael Underhill, et al.
Cell Research|September 9, 2004
Identification of a novel population of human cord blood cells with hema-topoietic and chondrocytic potentialKaren E Jay, Anne Rouleau, T Michael Underhill, et al.
Journal of Cell Science|August 3, 2011
Genetic deletion of Cyp26b1 negatively impacts limb skeletogenesis by inhibiting chondrogenesisHelen J Dranse, Arthur V Sampaio, Martin Petkovich, et al.
Fluids and Barriers of the CNS|April 4, 2024
Single-cell analysis of mesenchymal cells in permeable neural vasculature reveals novel diverse subpopulations of fibroblastsWilliam E Bastedo, R Wilder Scott, Martin Arostegui, et al.
Genome Research|August 15, 2024
Benchmarking bulk and single-cell variant-calling approaches on Chromium scRNA-seq and scATAC-seq librariesMatthew Wiens, Hossein Farahani, R Wilder Scott, et al.
The Journal of Cell Biology|July 10, 2002
Requirement for RAR-mediated gene repression in skeletal progenitor differentiationAndrea D Weston, Roshantha A S Chandraratna, Joseph Torchia, et al.
The Journal of Biological Chemistry|July 30, 2003
The coactivator p/CIP/SRC-3 facilitates retinoic acid receptor signaling via recruitment of GCN5Kirk Brown, Ying Chen, T Michael Underhill, et al.
Journal of Cell Science|January 20, 2005
Dynamics and interaction of caveolin-1 isoforms with BMP-receptorsAnja Nohe, Eleonora Keating, T Michael Underhill, et al.
Pageof 9

Showing results (11-20 of 82) with videos related to

Sort By:
Pageof 9
Birth Defects Research. Part C, Embryo Today : Reviews|September 6, 2003
Revisiting the role of retinoid signaling in skeletal developmentAndrea D Weston, Lisa M Hoffman, T Michael Underhill
Nature Communications|August 25, 2022
Cellular taxonomy of Hic1<sup>+</sup> mesenchymal progenitor derivatives in the limb: from embryo to adultMartin Arostegui, R Wilder Scott, Kerstin Böse, et al.
BMC Molecular Biology|September 21, 2006
The transcription factor ATF3 is upregulated during chondrocyte differentiation and represses cyclin D1 and A gene transcriptionClaudine G James, Anita Woods, T Michael Underhill, et al.
Cell Research|September 9, 2004
Identification of a novel population of human cord blood cells with hema-topoietic and chondrocytic potentialKaren E Jay, Anne Rouleau, T Michael Underhill, et al.
Journal of Cell Science|August 3, 2011
Genetic deletion of Cyp26b1 negatively impacts limb skeletogenesis by inhibiting chondrogenesisHelen J Dranse, Arthur V Sampaio, Martin Petkovich, et al.
Fluids and Barriers of the CNS|April 4, 2024
Single-cell analysis of mesenchymal cells in permeable neural vasculature reveals novel diverse subpopulations of fibroblastsWilliam E Bastedo, R Wilder Scott, Martin Arostegui, et al.
Genome Research|August 15, 2024
Benchmarking bulk and single-cell variant-calling approaches on Chromium scRNA-seq and scATAC-seq librariesMatthew Wiens, Hossein Farahani, R Wilder Scott, et al.
The Journal of Cell Biology|July 10, 2002
Requirement for RAR-mediated gene repression in skeletal progenitor differentiationAndrea D Weston, Roshantha A S Chandraratna, Joseph Torchia, et al.
The Journal of Biological Chemistry|July 30, 2003
The coactivator p/CIP/SRC-3 facilitates retinoic acid receptor signaling via recruitment of GCN5Kirk Brown, Ying Chen, T Michael Underhill, et al.
Journal of Cell Science|January 20, 2005
Dynamics and interaction of caveolin-1 isoforms with BMP-receptorsAnja Nohe, Eleonora Keating, T Michael Underhill, et al.
Pageof 9