Fra-1 replaces c-Fos-dependent functions in mice (Q40445308): Difference between revisions

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Set a claim value: author (P50): Farhad Hafezi (Q20829804), разрешение перенаправления / resolving redirect (Q56246753)Farhad Hafezi (Q20829804) (подробности / details)
 
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২০০০-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ
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سائنسی مضمون
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სამეცნიერო სტატია
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wissenschaftlicher Artikel
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գիտական հոդված
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artículo científico publicado en 2000
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Property / cites work: Expression of FosB during mouse development: normal development of FosB knockout mice. / rank
 
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Property / cites work: Expression of FosB during mouse development: normal development of FosB knockout mice. / reference
 
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Property / cites work: Continuous c-fos expression precedes programmed cell death in vivo / rank
 
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Property / cites work: Continuous c-fos expression precedes programmed cell death in vivo / reference
 
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Property / cites work: Activation of an inducible c-FosER fusion protein causes loss of epithelial polarity and triggers epithelial-fibroblastoid cell conversion / rank
 
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Property / cites work: Activation of an inducible c-FosER fusion protein causes loss of epithelial polarity and triggers epithelial-fibroblastoid cell conversion / reference
 
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Property / cites work: The retina of c-fos-/- mice: electrophysiologic, morphologic and biochemical aspects. / rank
 
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Property / cites work: The retina of c-fos-/- mice: electrophysiologic, morphologic and biochemical aspects. / reference
 
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Property / cites work: Increased bone formation and osteosclerosis in mice overexpressing the transcription factor Fra-1 / rank
 
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Property / cites work: Increased bone formation and osteosclerosis in mice overexpressing the transcription factor Fra-1 / reference
 
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Property / cites work: Fosl1 is a transcriptional target of c-Fos during osteoclast differentiation / rank
 
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Property / cites work: Fosl1 is a transcriptional target of c-Fos during osteoclast differentiation / reference
 
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Property / cites work: c-Jun is essential for normal mouse development and hepatogenesis / rank
 
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Property / cites work: c-Jun is essential for normal mouse development and hepatogenesis / reference
 
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Property / cites work: Deregulated c-fos expression interferes with normal bone development in transgenic mice / rank
 
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Property / cites work: Deregulated c-fos expression interferes with normal bone development in transgenic mice / reference
 
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Property / cites work: Bone and haematopoietic defects in mice lacking c-fos / rank
 
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Property / cites work: Bone and haematopoietic defects in mice lacking c-fos / reference
 
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Property / cites work: A null mutation at the c-jun locus causes embryonic lethality and retarded cell growth in culture / rank
 
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Property / cites work: A null mutation at the c-jun locus causes embryonic lethality and retarded cell growth in culture / reference
 
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Property / cites work: c-Fos: a key regulator of osteoclast-macrophage lineage determination and bone remodeling / rank
 
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Property / cites work: c-Fos: a key regulator of osteoclast-macrophage lineage determination and bone remodeling / reference
 
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Property / cites work: The absence of c-fos prevents light-induced apoptotic cell death of photoreceptors in retinal degeneration in vivo / rank
 
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Property / cites work: The absence of c-fos prevents light-induced apoptotic cell death of photoreceptors in retinal degeneration in vivo / reference
 
stated in: PubMed
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Property / cites work: Rescue of Cyclin D1 Deficiency by Knockin Cyclin E / rank
 
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Property / cites work: c-fos controls the "private pathway" of light-induced apoptosis of retinal photoreceptors / rank
 
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Property / cites work: c-fos controls the "private pathway" of light-induced apoptosis of retinal photoreceptors / reference
 
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Property / cites work: Pleiotropic effects of a null mutation in the c-fos proto-oncogene / rank
 
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Property / cites work: Pleiotropic effects of a null mutation in the c-fos proto-oncogene / reference
 
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Latest revision as of 17:30, 10 April 2024

scientific article
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Fra-1 replaces c-Fos-dependent functions in mice
scientific article

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    Fra-1 replaces c-Fos-dependent functions in mice (English)
    1 November 2000
    2695-2700

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