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Pax3 and Pax7 expression and regulation in the avian embryo

Anatomy and Embryology, 2006
Satellite cells are essential for postnatal growth and repair of skeletal muscle. The paired-box transcription factors Pax3 and Pax7 are expressed in emerging muscle precursors. Recent studies have traced the origin of satellite cells to the embryonic dermomyotome, however, their developmental regulation throughout embryogenesis remains unclear.
Anthony, Otto   +2 more
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Characterization of the alternate allelic forms of human PAX7

Mammalian Genome, 2000
Six different allelic forms of the human neurogenic and myogenic developmental gene, PAX7, have been identified. They are distinguished by the number of tandem tetranucleotide, GAAG, repeats at a polymorphic site within the second intron of the paired box.
Ziman, M.R.   +3 more
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The Role of Pax3 and Pax7 in Development and Cancer

Critical Reviews™ in Oncogenesis, 1998
Pax genes consist of a family of transcription factors that are essentially required for the genesis of a variety of tissues and organs. Pax3 and Pax7 are specifically expressed in the dorsal neural tube and the developing somite. Loss-of-function mutations of Pax3 in Splotch mice and in Waardenburg syndrome in man revealed that Pax3 is necessary for ...
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Generation of a Rat Monoclonal Antibody Specific for Pax7

Hybridoma, 2009
Pax7 is a nuclear localization protein, well known as a member of the paired box family. It is expressed at a very early stage of muscle differentiation and is also found in muscle satellite cells that are recognized as muscle stem cells. Pax7 is also recognized as a tumor cell marker since it is greatly expressed in various types of tumor cells.
Akihito, Harada   +5 more
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The role of Pax7 in determining the cytoarchitecture of the superior colliculus

Development, Growth & Differentiation, 2004
Pax genes are a family of transcriptional regulators vital for embryonic development. One member of the family, Pax7, functions early in neural development to establish dorsal polarity of the neural tube, and continuous refinement of its expression affords regional identity to brain nuclei, in particular the superior colliculus. Pax7 expression within
Jennifer, Thompson   +2 more
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Cyclin D3 promotes myogenic differentiation and Pax7 transcription

Journal of Cellular Biochemistry, 2011
AbstractDifferentiation of skeletal muscle myoblasts involves activation of muscle‐specific markers such as MyoD, Myf5, MRF4, and myogenin, followed by exit from the cell cycle, expression of structural proteins, and fusion into multinucleated myotubes. Cyclin D3 is upregulated during muscle differentiation, and expression of cyclin D3 in proliferating
Ritika, Gurung, Veena K, Parnaik
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Pax3 functions in cell survival and in pax7 regulation

Development, 1999
Abstract In developing vertebrate embryos, Pax3 is expressed in the neural tube and in the paraxial mesoderm that gives rise to skeletal muscles. Pax3 mutants develop muscular and neural tube defects; furthermore, Pax3 is essential for the proper activation of the myogenic determination factor gene, MyoD, during early muscle development ...
A G, Borycki   +4 more
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Pax7BP, a novel Pax7-binding protein, bridges Pax7 and the H3K4 histone methyltransferase complex and mediates the expression of Pax7 target genes in myoblasts

2014
Muscle satellite cells (i.e., muscle stem cells) are mainly responsible for postnatal muscle growth and regeneration. Pax7, a transcription factor of the paired-domain-containing proteins, is preferentially expressed in the quiescent muscle satellite cell and proliferating myoblast.
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Comparison of the proximal promoter regions of the PAX3 and PAX7 genes

Cancer Genetics and Cytogenetics, 2007
Translocations t(2;13)(q35;q14) and t(1;13)(p36;q14), which fuse PAX3 and PAX7, respectively, to FOXO1A, characterize alveolar rhabdomyosarcoma. Previous studies have suggested that the expression of PAX7-FOXO1A is copy-number dependent, but that of PAX3-FOXO1A is not, which may be due to a weaker PAX7 than PAX3 promoter.
Emely, Möller   +4 more
openaire   +2 more sources

Biphenotypic Sinonasal Sarcoma with PAX7 Expression

International Journal of Surgical Pathology, 2022
Natalia Georgantzoglou   +4 more
openaire   +2 more sources

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