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Phenotypes associated with this allele
Allele Symbol
Allele Name
Allele ID
Tg(MMTV-Myc)WT13Jrn
transgene insertion WT13, Joseph R Nevins
MGI:5524080
Summary 1 genotype
Jump to Allelic Composition Genetic Background Genotype ID
tg1
Tg(MMTV-Myc)WT13Jrn/0 involves: FVB/N MGI:5524084


Genotype
MGI:5524084
tg1
Allelic
Composition
Tg(MMTV-Myc)WT13Jrn/0
Genetic
Background
involves: FVB/N
Find Mice Using the International Mouse Strain Resource (IMSR)
No mouse lines available in IMSR.
See publication links below for author information.
phenotype observed in females
phenotype observed in males
N normal phenotype
neoplasm
• mutants develop mammary tumors (J:153233)
• nearly 40% of mammary tumors are microacinar, with the remainder of tumors showing various other morphologies including, papillary, squamous, epithelial-mesenchymal-transition (EMT) type, solid, adenocarcinoma and tumors with mixed population of various types of tumors (J:153233)
• the squamous/EMT subgroup of tumors shares attributes of human triple-negative breast cancer and is associated with an increase in risk of metastasis (J:153233)
• Kras activating mutations are seen in 22.4% of tumors (J:193362)
• mice with tumors containing a Kras mutation show a reduction in latency compared to mice with tumors without a mutation (J:193362)
• microacinar type tumors show similar expression profiles to human luminal B tumors (J:193362)
• epithelial-mesenchymal-transition (EMT) subtype tumors have an elevation in the frequency of activating Kras mutations compared to the other types of tumors seen in mutants and show similar expression profiles to human claudin-low tumors (J:193362)
• pulmonary metastasis is sometimes observed and is associated with the squamous/EMT subgroup of tumors

endocrine/exocrine glands
• mammary glands show increased side bud formation at 8 weeks of age
• mutants develop mammary tumors (J:153233)
• nearly 40% of mammary tumors are microacinar, with the remainder of tumors showing various other morphologies including, papillary, squamous, epithelial-mesenchymal-transition (EMT) type, solid, adenocarcinoma and tumors with mixed population of various types of tumors (J:153233)
• the squamous/EMT subgroup of tumors shares attributes of human triple-negative breast cancer and is associated with an increase in risk of metastasis (J:153233)
• Kras activating mutations are seen in 22.4% of tumors (J:193362)
• mice with tumors containing a Kras mutation show a reduction in latency compared to mice with tumors without a mutation (J:193362)
• microacinar type tumors show similar expression profiles to human luminal B tumors (J:193362)
• epithelial-mesenchymal-transition (EMT) subtype tumors have an elevation in the frequency of activating Kras mutations compared to the other types of tumors seen in mutants and show similar expression profiles to human claudin-low tumors (J:193362)

integument
• mammary glands show increased side bud formation at 8 weeks of age
• mutants develop mammary tumors (J:153233)
• nearly 40% of mammary tumors are microacinar, with the remainder of tumors showing various other morphologies including, papillary, squamous, epithelial-mesenchymal-transition (EMT) type, solid, adenocarcinoma and tumors with mixed population of various types of tumors (J:153233)
• the squamous/EMT subgroup of tumors shares attributes of human triple-negative breast cancer and is associated with an increase in risk of metastasis (J:153233)
• Kras activating mutations are seen in 22.4% of tumors (J:193362)
• mice with tumors containing a Kras mutation show a reduction in latency compared to mice with tumors without a mutation (J:193362)
• microacinar type tumors show similar expression profiles to human luminal B tumors (J:193362)
• epithelial-mesenchymal-transition (EMT) subtype tumors have an elevation in the frequency of activating Kras mutations compared to the other types of tumors seen in mutants and show similar expression profiles to human claudin-low tumors (J:193362)

Mouse Models of Human Disease
DO ID OMIM ID(s) Ref(s)
breast cancer DOID:1612 OMIM:114480
J:193362





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last database update
11/12/2024
MGI 6.24
The Jackson Laboratory