About   Help   FAQ
Phenotypes associated with this allele
Allele Symbol
Allele Name
Allele ID
Baiap2Gt(XG757)Byg
gene trap XG757, BayGenomics
MGI:3835373
Summary 2 genotypes
Jump to Allelic Composition Genetic Background Genotype ID
hm1
Baiap2Gt(XG757)Byg/Baiap2Gt(XG757)Byg B6.129P2-Baiap2Gt(XG757)Byg MGI:3835551
cx2
Baiap2Gt(XG757)Byg/Baiap2Gt(XG757)Byg
Baiap2l1tm1.1Arte/Baiap2l1tm1.1Arte
involves: 129P2/OlaHsd * C57BL/6J * C57BL/6NTac MGI:6359753


Genotype
MGI:3835551
hm1
Allelic
Composition
Baiap2Gt(XG757)Byg/Baiap2Gt(XG757)Byg
Genetic
Background
B6.129P2-Baiap2Gt(XG757)Byg
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Baiap2Gt(XG757)Byg mutation (1 available); any Baiap2 mutation (29 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
mortality/aging
• birth of mice does not follow Mendelian ratios, with 10.3% of progenies being homozygous mutant mice (J:144939)
• homozygous mice born show normal body size and no apparent behavioral abnormalities (J:144939)
• only a third of homozygotes survive to adulthood (J:275147)
• most of the homozygotes that survive to E18.5 are dead upon birth or die perinatally, with only 7.2% alive at weaning
• although homozygotes are present at normal Mendelian ratios at E10.5, reduced numbers are detected at E14.5, E18.5 and at weaning; ~50% of homozygotes die between E10.5 and E14.5

growth/size/body
• at E10.5, 21% of homozygotes appear developmentally delayed
• at E14.5, 14 of 31 homozygotes show reduced size
• at E18.5, most (7 of 12) homozygotes are smaller than normal

craniofacial
• at E18.5, homozygotes show clefts in the basioccipital bone
• at E18.5, homozygotes show clefts in the basisphenoid bone

cardiovascular system
N
• in vitro angiogenesis of E14.5 umbilical arterial explants in response to VEGF signals is normal
• at E14.5, placental labyrinth vascularization is less dense with significantly decreased CD31+ staining relative to controls
• labyrinth vasculogenesis is significantly decreased, with 27% fewer blood vessels per unit area, and a 31.1% increase in the average lumen size of blood vessels relative to wild-type controls
• however, labyrinth thickness is normal
• at E14.5, 14 of 31 homozygotes show decreased vascular branching
• at E10.5, 21% of homozygotes show cardiac defects
• homozygotes exhibit early cardiac defects
• at E10.5, atrioventricular endocardial cushions are poorly developed (hypocellular), with significantly fewer mesenchymal cells relative to heterozygous controls
• at E10.5, the endocardium appears to be largely detached from the myocardium
• mesenchymal cushions at the apex of the interventricular septum (IVS) are smaller and the septa are not closed by E14.5
• IVS shows diffuse hyper-trabeculation and non-compaction of myocardial fibers
• at E14.5, homozygotes show IVS defects, consistent with abnormal cardiac cushion formation and maturation
• at E14.5, the heart right ventricles appear smaller and misshapen
• however, atrial chambers appear grossly normal
• at E14.5, ventricular walls are thinner and hypocellular
• at E10.5, 21% of homozygotes show pericardial edema
• at E14.5, the ventricular epicardium is separated from the myocardium with red blood cells in the subepicardial space, unlike in heterozygous control hearts
• at E14.5, placenta hemorrhages are observed
• at E18.5, 25% of homozygotes show severe subcutaneous hemorrhages

embryo
• at E14.5, placental labyrinth vascularization is less dense with significantly decreased CD31+ staining relative to controls
• labyrinth vasculogenesis is significantly decreased, with 27% fewer blood vessels per unit area, and a 31.1% increase in the average lumen size of blood vessels relative to wild-type controls
• however, labyrinth thickness is normal
• at E14.5, placenta hemorrhages are observed
• at E10.5, 21% of homozygotes appear developmentally delayed
• at E14.5, homozygotes show defects in trophoblast development and differentiation, primarily in the spongiotrophoblast lineage
• however, organization of maternal blood spaces and labyrinth trophoblast differentiation are normal
• expression of spongiotrophoblast markers, Tpbpa and Flt1, are reduced to ~70% of wild-type levels
• at E14.5, the spongiotrophoblast layer is thinner, highly disorganized, and contains less Tpbpa+ cells than wild-type or heterozygous control placentas
• at E14.5, the spongiotrophoblast layer is thinner

homeostasis/metabolism
• at E10.5, 21% of homozygotes show pericardial edema
• at E14.5, 15 of 31 homozygotes show subcutaneous edema

integument
• at E18.5, 25% of homozygotes show severe subcutaneous hemorrhages
• at E14.5, 15 of 31 homozygotes show subcutaneous edema

limbs/digits/tail
• at E14.5 and E18.5, homozygotes show forepaw oligodactyly, with digit V missing
• however, carpal and long bone formation are normal

skeleton
• at E14.5, 14 of 31 homozygotes show skeletal defects
• at E18.5, 25% of homozygotes show severe skeletal defects
• at E18.5, homozygotes show clefts in the basioccipital bone
• at E18.5, homozygotes show clefts in the basisphenoid bone

nervous system
• reduced AMPA/NMDA ratio of excitatory synaptic transmission and a selective increase in NMDA but not AMPA receptor-mediated transmission
• dendritic spine numbers, density and ultrastructures in the apical dendrites of CA1 pyramidal neurons are normal
• basal synaptic transmission is normal
• a markedly enhanced long-term potentiation with no changes in long-term depression

behavior/neurological
• impaired novel object recognition learning and memory
• impaired spatial learning memory indicated by significantly increased escape latencies in the hidden-platform Morris water maze test




Genotype
MGI:6359753
cx2
Allelic
Composition
Baiap2Gt(XG757)Byg/Baiap2Gt(XG757)Byg
Baiap2l1tm1.1Arte/Baiap2l1tm1.1Arte
Genetic
Background
involves: 129P2/OlaHsd * C57BL/6J * C57BL/6NTac
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Baiap2Gt(XG757)Byg mutation (1 available); any Baiap2 mutation (29 available)
Baiap2l1tm1.1Arte mutation (0 available); any Baiap2l1 mutation (46 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
mortality/aging
• non-resorbed embryos are detected in only 1 out of 10 litters analyzed at E18.8
• no double homozygotes are recovered at weaning
• only 2.7% of double homozygotes are recovered at E18.5
• although double homozygotes are present at normal Mendelian ratios at E10.5, reduced numbers are detected at E14.5

integument
• at E14.5, almost all (14 of 15) double homozygotes show severe subcutaneous edema

cardiovascular system
N
• in vitro angiogenesis of E14.5 umbilical arterial explants in response to VEGF signals is normal
• at E14.5, vessel density of double homozygotes is only ~50% of wild-type and, more significantly, 30% less than that in single Baiap2Gt(XG757)Byg homozygotes
• average lumen size of CD31+ blood vessels is ~12.4% larger than that in single Baiap2Gt(XG757)Byg homozygotes
• at E14.5, double homozygotes exhibit early cardiac defects similar to those observed in single Baiap2Gt(XG757)Byg homozygotes
• at E10.5, double homozygotes display heart tube malformations
• at E14.5, double homozygotes show incomplete IVS closure
• at E14.5, double homozygotes show malformation of the mesenchymal membranous part of the septa
• at E14.5, the heart right ventricles are misshapen
• at E10.5, double homozygotes exhibit pericardial edema with similar ratios as single Baiap2Gt(XG757)Byg homozygotes

embryo
• at E14.5, vessel density of double homozygotes is only ~50% of wild-type and, more significantly, 30% less than that in single Baiap2Gt(XG757)Byg homozygotes
• average lumen size of CD31+ blood vessels is ~12.4% larger than that in single Baiap2Gt(XG757)Byg homozygotes
• at E14.5, patches of trophoblast giant cells are observed in the spongiotrophoblast layer
• at E14.5, placentas exhibit a much thinner and significantly more disorganized Tpbpa+ spongiotrophoblast layer than that in single Baiap2Gt(XG757)Byg homozygotes

homeostasis/metabolism
• at E10.5, double homozygotes exhibit pericardial edema with similar ratios as single Baiap2Gt(XG757)Byg homozygotes
• at E14.5, almost all (14 of 15) double homozygotes show severe subcutaneous edema

limbs/digits/tail
• at E14.5, almost all (13 of 15) double homozygotes show forepaw oligodactyly; loss of posterior digits in the right forepaw is observed





Contributing Projects:
Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO)
Citing These Resources
Funding Information
Warranty Disclaimer, Privacy Notice, Licensing, & Copyright
Send questions and comments to User Support.
last database update
11/19/2024
MGI 6.24
The Jackson Laboratory