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Krox-20 probe2 Probe Detail
Nucleotide
Probe/Clone
  • Name
    Krox-20 probe2
  • Sequence Type
    cDNA
  • ID
    MGI:1275919
  • Region Covered
    includes the 3' untranslated region (nucleotides 2417-2834 of X06746)
  • Insert Size
    0.42kb
Source
  • Species
    mouse, laboratory
Genes
Egr2 early growth response 2
Expression
  • Assay Results
    129
Sequences
References
J:9604 Wilkinson DG, et al., Segment-specific expression of a zinc-finger gene in the developing nervous system of the mouse. Nature. 1989 Feb 2;337(6206):461-4
J:32270 Wilkinson DG, et al., Segmental expression of Hox-2 homoeobox-containing genes in the developing mouse hindbrain. Nature. 1989 Oct 5;341(6241):405-9
J:14491 Dolle P, et al., Local alterations of Krox-20 and Hox gene expression in the hindbrain suggest lack of rhombomeres 4 and 5 in homozygote null Hoxa-1 (Hox-1.6) mutant embryos. Proc Natl Acad Sci U S A. 1993 Aug 15;90(16):7666-70
J:16077 Schneider-Maunoury S, et al., Disruption of Krox-20 results in alteration of rhombomeres 3 and 5 in the developing hindbrain. Cell. 1993 Dec 17;75(6):1199-214
J:30828 Ang SL, et al., A targeted mouse Otx2 mutation leads to severe defects in gastrulation and formation of axial mesoderm and to deletion of rostral brain. Development. 1996 Jan;122(1):243-52
J:38388 Dupe V, et al., In vivo functional analysis of the Hoxa-1 3' retinoic acid response element (3'RARE). Development. 1997 Jan;124(2):399-410
J:39203 Varlet I, et al., nodal expression in the primitive endoderm is required for specification of the anterior axis during mouse gastrulation. Development. 1997 Mar;124(5):1033-44
J:42110 Wassarman KM, et al., Specification of the anterior hindbrain and establishment of a normal mid/hindbrain organizer is dependent on Gbx2 gene function. Development. 1997 Aug;124(15):2923-34
J:45681 Suda Y, et al., Cooperation between Otx1 and Otx2 genes in developmental patterning of rostral brain. Mech Dev. 1997 Dec;69(1-2):125-41
J:46973 Studer M, et al., Genetic interactions between Hoxa1 and Hoxb1 reveal new roles in regulation of early hindbrain patterning. Development. 1998 Mar;125(6):1025-36
J:49657 Dufort D, et al., The transcription factor HNF3beta is required in visceral endoderm for normal primitive streak morphogenesis. Development. 1998 Aug;125(16):3015-25
J:41551 Dupe V, et al., Key roles of retinoic acid receptors alpha and beta in the patterning of the caudal hindbrain, pharyngeal arches and otocyst in the mouse. Development. 1999 Nov;126(22):5051-9
J:51989 Suda Y, et al., Functional equivalency between Otx2 and Otx1 in development of the rostral head. Development. 1999 Feb;126(4):743-57
J:69856 Wendling O, et al., Roles of retinoic acid receptors in early embryonic morphogenesis and hindbrain patterning. Development. 2001 Jun;128(11):2031-8
J:70272 Kibar Z, et al., Ltap, a mammalian homolog of Drosophila Strabismus/Van Gogh, is altered in the mouse neural tube mutant Loop-tail. Nat Genet. 2001 Jul;28(3):251-5
J:73067 Li JY, et al., Otx2 and Gbx2 are required for refinement and not induction of mid-hindbrain gene expression. Development. 2001 Dec;128(24):4979-91
J:74910 Theil T, et al., Requirement for downregulation of kreisler during late patterning of the hindbrain. Development. 2002 Mar;129(6):1477-85
J:86841 Elms P, et al., Zic2 is required for neural crest formation and hindbrain patterning during mouse development. Dev Biol. 2003 Dec 15;264(2):391-406
J:88939 Rhinn M, et al., Isolation and expression of the homeobox gene Gbx1 during mouse development. Dev Dyn. 2004 Feb;229(2):334-9
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:149312 Moran JL, et al., Manic fringe is not required for embryonic development, and fringe family members do not exhibit redundant functions in the axial skeleton, limb, or hindbrain. Dev Dyn. 2009 May 28;238(7):1803-1812

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last database update
10/22/2024
MGI 6.24
The Jackson Laboratory