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Role of retinoic acid receptor (RAR) signaling in post-natal male germ cell differentiation
Une procédure dédiée au phénotypage de souris porteuses de mutations ciblées létales in utero ou à la naissance
Standardized Post-Mortem Examination and Fixation Procedures for Mutant and Treated Mice
Retinoic acid drives aryl hydrocarbon receptor expression and is instrumental to dioxin-induced toxicity during palate development
Histopathologie Testiculaire chez la souris
Hepatocytes Are the Principal Source of Circulating RBP4 in Mice
Temporally controlled targeted somatic mutagenesis in mouse eye pigment epithelium
Spermatogonia differentiation requires retinoic acid receptor gamma
Testicular differentiation occurs in absence of R-spondin1 and Sox9 in mouse sex reversals
Tex 19 paralogs exhibit a gonad and placenta-specific expression in the mouse
TIF1beta association with HP1 is essential for post-gastrulation development, but not for Sertoli cell functions during spermatogenesis
Parp2 is required for the differentiation of post-meiotic germ cells: Identification of a spermatid-specific complex containing Parp1, Parp2, TP2 and HSPA2
Retinoid content, visual responses, and ocular morphology are compromised in the retinas of mice lacking the retinol-binding protein receptor, STRA6
The mammalian-specific Tex19.1 gene plays an essential role in spermatogenesis and placenta-supported development
Retinoic acid induces Sertoli cell paracrine signals for spermatogonia differentiation but cell autonomously drives spermatocyte meiosis
Retinoic Acid Receptors Control Spermatogonia Cell-Fate and Induce Expression of the SALL4A Transcription Factor
Transcription cofactors TRIM24, TRIM28, and TRIM33 associate to form regulatory complexes that suppress murine hepatocellular carcinoma
The STRA6 receptor is essential for retinol-binding protein-induced insulin resistance but not for maintaining vitamin A homeostasis in tissues other than the eye
A subpopulation of smooth muscle cells, derived from melanocyte-competent precursors, prevents patent ductus arteriosus
Poly(ADP-ribose) polymerase-2 contributes to the fidelity of male meiosis I and spermiogenesis

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