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Pax3 probe2 Probe Detail
Nucleotide
Probe/Clone
  • Name
    Pax3 probe2
  • Sequence Type
    cDNA
  • ID
    MGI:1101193
  • Region Covered
    includes a 3' portion of the gene
  • Vector Type
    Plasmid
  • Insert Site
    HindIII/PstI
  • Insert Size
    ~0.52kb
Source
  • Species
    mouse, laboratory
  • Age
    embryonic day 8.5
Genes
Pax3 paired box 3
Expression
  • Assay Results
    399
References
J:11140 Goulding MD, et al., Pax-3, a novel murine DNA binding protein expressed during early neurogenesis. EMBO J. 1991 May;10(5):1135-47
J:15850 Guillemot F, et al., Mammalian achaete-scute homolog 1 is required for the early development of olfactory and autonomic neurons. Cell. 1993 Nov 5;75(3):463-76
J:16332 Koseki H, et al., A role for Pax-1 as a mediator of notochordal signals during the dorsoventral specification of vertebrae. Development. 1993 Nov;119(3):649-60
J:16484 Dietrich S, et al., Altered Pax gene expression in murine notochord mutants: the notochord is required to initiate and maintain ventral identity in the somite. Mech Dev. 1993 Dec;44(2-3):189-207
J:16438 Sasaki H, et al., HNF-3 beta as a regulator of floor plate development. Cell. 1994 Jan 14;76(1):103-15
J:17224 Bober E, et al., Pax-3 is required for the development of limb muscles: a possible role for the migration of dermomyotomal muscle progenitor cells. Development. 1994 Mar;120(3):603-12
J:18916 Dickinson ME, et al., Evidence for a mitogenic effect of Wnt-1 in the developing mammalian central nervous system. Development. 1994 Jun;120(6):1453-71
J:19895 Ang SL, et al., HNF-3 beta is essential for node and notochord formation in mouse development. Cell. 1994 Aug 26;78(4):561-74
J:21616 Braun T, et al., MyoD expression marks the onset of skeletal myogenesis in Myf-5 mutant mice. Development. 1994 Nov;120(11):3083-92
J:21617 Gunther T, et al., Open brain, a new mouse mutant with severe neural tube defects, shows altered gene expression patterns in the developing spinal cord. Development. 1994 Nov;120(11):3119-30
J:30824 Grass S, et al., Alterations in somite patterning of Myf-5-deficient mice: a possible role for FGF-4 and FGF-6. Development. 1996 Jan;122(1):141-50
J:30825 Sporle R, et al., Severe defects in the formation of epaxial musculature in open brain (opb) mutant mouse embryos. Development. 1996 Jan;122(1):79-86
J:32016 Daston G, et al., Pax-3 is necessary for migration but not differentiation of limb muscle precursors in the mouse. Development. 1996 Mar;122(3):1017-27
J:34184 Yang XM, et al., Expression of the met receptor tyrosine kinase in muscle progenitor cells in somites and limbs is absent in Splotch mice. Development. 1996 Jul;122(7):2163-71
J:34768 Tremblay P, et al., Inhibition of floor plate differentiation by Pax3: evidence from ectopic expression in transgenic mice. Development. 1996 Aug;122(8):2555-67
J:35809 Epstein DJ, et al., Antagonizing cAMP-dependent protein kinase A in the dorsal CNS activates a conserved Sonic hedgehog signaling pathway. Development. 1996 Sep;122(9):2885-94
J:36830 Suzuki N, et al., Failure of ventral body wall closure in mouse embryos lacking a procollagen C-proteinase encoded by Bmp1, a mammalian gene related to Drosophila tolloid. Development. 1996 Nov;122(11):3587-95
J:37330 Zuniga MBA, et al., AltFGF-2, a novel ER-associated FGF-2 protein isoform: its embryonic distribution and functional analysis during neural tube development. Dev Biol. 1996 Dec 15;180(2):680-92
J:38385 Conway SJ, et al., Pax3 is required for cardiac neural crest migration in the mouse: evidence from the splotch (Sp2H) mutant. Development. 1997 Jan;124(2):505-14
J:40034 Labosky PA, et al., The winged helix gene, Mf3, is required for normal development of the diencephalon and midbrain, postnatal growth and the milk-ejection reflex. Development. 1997 APR;124(7):1263-1274
J:41030 Mastick GS, et al., Pax-6 functions in boundary formation and axon guidance in the embryonic mouse forebrain. Development. 1997 May;124(10):1985-97
J:41401 Grindley JC, et al., Disruption of PAX6 function in mice homozygous for the Pax6Sey-1Neu mutation produces abnormalities in the early development and regionalization of the diencephalon. Mech Dev. 1997 Jun;64(1-2):111-26
J:43769 Qu S, et al., Polydactyly and ectopic ZPA formation in Alx-4 mutant mice. Development. 1997 Oct;124(20):3999-4008
J:44060 Sporle R, et al., System to identify individual somites and their derivatives in the developing mouse embryo. Dev Dyn. 1997 Nov;210(3):216-26
J:45349 Kablar B, et al., MyoD and Myf-5 differentially regulate the development of limb versus trunk skeletal muscle. Development. 1997 Dec;124(23):4729-38
J:47700 Greene ND, et al., Abnormalities of floor plate, notochord and somite differentiation in the loop-tail (Lp) mouse: a model of severe neural tube defects. Mech Dev. 1998 Apr;73(1):59-72
J:49164 Ding Q, et al., Diminished Sonic hedgehog signaling and lack of floor plate differentiation in Gli2 mutant mice. Development. 1998 Jul;125(14):2533-43
J:50279 Ikeya M, et al., Wnt signaling from the dorsal neural tube is required for the formation of the medial dermomyotome. Development. 1998 Dec;125(24):4969-76
J:50697 Labosky PA, et al., The winged helix transcription factor Hfh2 is expressed in neural crest and spinal cord during mouse development. Mech Dev. 1998 Aug;76(1-2):185-90
J:51099 Asakura A, et al., Apoptosis of epaxial myotome in Danforth's short-tail (Sd) mice in somites that form following notochord degeneration. Dev Biol. 1998 Nov 15;203(2):276-89
J:53292 Dietrich S, et al., The role of SF/HGF and c-Met in the development of skeletal muscle. Development. 1999 Apr;126(8):1621-9
J:53294 Solloway MJ, et al., Early embryonic lethality in Bmp5;Bmp7 double mutant mice suggests functional redundancy within the 60A subgroup. Development. 1999 Apr;126(8):1753-68
J:55248 Borycki AG, et al., Pax3 functions in cell survival and in pax7 regulation. Development. 1999 Apr;126(8):1665-74
J:55575 Furumoto TA, et al., Notochord-dependent expression of MFH1 and PAX1 cooperates to maintain the proliferation of sclerotome cells during the vertebral column development. Dev Biol. 1999 Jun 1;210(1):15-29
J:55780 Borycki AG, et al., Sonic hedgehog controls epaxial muscle determination through Myf5 activation. Development. 1999 Sep;126(18):4053-63
J:56236 Dickman ED, et al., Abnormal skeletogenesis occurs coincident with increased apoptosis in the Splotch (Sp2H) mutant: putative roles for Pax3 and PDGFRalpha in rib patterning. Anat Rec. 1999 Jul 1;255(3):353-61
J:56424 Goodrich LV, et al., Overexpression of ptc1 inhibits induction of Shh target genes and prevents normal patterning in the neural tube. Dev Biol. 1999 Jul 15;211(2):323-34
J:58409 Horikawa K, et al., Adhesive subdivisions intrinsic to the epithelial somites. Dev Biol. 1999 Nov 15;215(2):182-9
J:72380 Makino S, et al., A Spontaneous Mouse Mutation, mesenchymal dysplasia (mes), Is Caused by a Deletion of the Most C-Terminal Cytoplasmic Domain of patched (ptc). Dev Biol. 2001 Nov 1;239(1):95-106
J:72525 Schubert FR, et al., Early mesodermal phenotypes in splotch suggest a role for Pax3 in the formation of epithelial somites. Dev Dyn. 2001 Nov;222(3):506-21
J:73781 Kwang SJ, et al., Msx2 is an immediate downstream effector of Pax3 in the development of the murine cardiac neural crest. Development. 2002 Jan;129(2):527-38
J:90276 Ota MS, et al., Twist is required for patterning the cranial nerves and maintaining the viability of mesodermal cells. Dev Dyn. 2004 Jun;230(2):216-28
J:99098 Hester M, et al., Smad1 and Smad8 function similarly in mammalian central nervous system development. Mol Cell Biol. 2005 Jun;25(11):4683-92
J:106405 Mackay DR, et al., The mouse Ovol2 gene is required for cranial neural tube development. Dev Biol. 2006 Mar 1;291(1):38-52
J:117873 Chang YS, et al., Graded expression of Zfp462 in the embryonic mouse cerebral cortex. Gene Expr Patterns. 2007 Feb;7(4):405-12
J:122556 Inoue T, et al., Zic2 and Zic3 synergistically control neurulation and segmentation of paraxial mesoderm in mouse embryo. Dev Biol. 2007 Jun 15;306(2):669-84
J:141111 Chang CP, et al., Pbx1 functions in distinct regulatory networks to pattern the great arteries and cardiac outflow tract. Development. 2008 Nov;135(21):3577-86
J:187741 Hu JK, et al., Autonomous and nonautonomous roles of Hedgehog signaling in regulating limb muscle formation. Genes Dev. 2012 Sep 15;26(18):2088-102
J:316987 Sanchez-Ferras O, et al., Caudal-related homeobox (Cdx) protein-dependent integration of canonical Wnt signaling on paired-box 3 (Pax3) neural crest enhancer. J Biol Chem. 2012 May 11;287(20):16623-35

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last database update
05/07/2024
MGI 6.23
The Jackson Laboratory