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Phenotypes associated with this allele
Allele Symbol
Allele Name
Allele ID
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte
targeted mutation 5, TaconicArtemis
MGI:5521555
Summary 2 genotypes
Jump to Allelic Composition Genetic Background Genotype ID
ht1
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte/Gt(ROSA)26Sor+ C57BL/6-Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte MGI:5521560
ht2
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte/Gt(ROSA)26Sor+ involves: C57BL/6 * FVB MGI:5521561


Genotype
MGI:5521560
ht1
Allelic
Composition
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte/Gt(ROSA)26Sor+
Genetic
Background
C57BL/6-Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte mutation (0 available); any Gt(ROSA)26Sor mutation (993 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
mortality/aging
• no mice are recovered at birth when exposed to doxycycline throughout pregnancy

reproductive system
• mice treated with doxycycline from birth exhibit defective lobuloalveolar differentiation during mid- and late pregnancy that persists in parturition compared with wild-type mice
• however, alveolar lumina are filled with milk

integument
• of terminal end bud in mice treated with doxycycline from birth
• at 4 and 6 weeks, mice treated with doxycycline from birth exhibit delayed mammary gland outgrowth compared with wild-type mice
• at 4 weeks, mice treated with doxycycline from birth exhibit distal ends without terminal end bud appearance unlike in wild-type mice
• however, outgrowth at 9 weeks and mammary epithelium architecture are normal
• mice treated with doxycycline from birth exhibit defective lobuloalveolar differentiation during mid- and late pregnancy that persists in parturition compared with wild-type mice
• however, alveolar lumina are filled with milk
• mice treated with doxycycline from birth exhibit reduced ductal elongation compared with wild-type mice

growth/size/body
• in mice treated with doxycycline from birth

immune system
• in mice treated with doxycycline from birth

cellular
• of terminal end bud in mice treated with doxycycline from birth

endocrine/exocrine glands
• of terminal end bud in mice treated with doxycycline from birth
• at 4 and 6 weeks, mice treated with doxycycline from birth exhibit delayed mammary gland outgrowth compared with wild-type mice
• at 4 weeks, mice treated with doxycycline from birth exhibit distal ends without terminal end bud appearance unlike in wild-type mice
• however, outgrowth at 9 weeks and mammary epithelium architecture are normal
• mice treated with doxycycline from birth exhibit defective lobuloalveolar differentiation during mid- and late pregnancy that persists in parturition compared with wild-type mice
• however, alveolar lumina are filled with milk
• mice treated with doxycycline from birth exhibit reduced ductal elongation compared with wild-type mice




Genotype
MGI:5521561
ht2
Allelic
Composition
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte/Gt(ROSA)26Sor+
Genetic
Background
involves: C57BL/6 * FVB
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Gt(ROSA)26Sortm5(H1/tetO-RNAi:Ezh2)Arte mutation (0 available); any Gt(ROSA)26Sor mutation (993 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
endocrine/exocrine glands
• mice treated with doxycycline from birth exhibit a net loss of luminal cells coupled with enhanced differentiation to maintain the pool of differentiated luminal cells compared with wild-type mice

integument
• mice treated with doxycycline from birth exhibit a net loss of luminal cells coupled with enhanced differentiation to maintain the pool of differentiated luminal cells compared with wild-type mice

mortality/aging
• no mice are recovered at birth when exposed to doxycycline throughout pregnancy





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Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO)
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last database update
11/19/2024
MGI 6.24
The Jackson Laboratory