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Phenotypes associated with this allele
Allele Symbol
Allele Name
Allele ID
Tnfrsf1btm1.2Gkl
targeted mutation 1.2, George Kollias
MGI:6195556
Summary 2 genotypes
Jump to Allelic Composition Genetic Background Genotype ID
hm1
Tnfrsf1btm1.2Gkl/Tnfrsf1btm1.2Gkl involves: C57BL/6 * C57BL/6J MGI:6195561
cx2
Tnftm2Gkl/Tnf+
Tnfrsf1btm1.2Gkl/Tnfrsf1btm1.2Gkl
involves: 129S/SvEv * C57BL/6 * C57BL/6J MGI:6195613


Genotype
MGI:6195561
hm1
Allelic
Composition
Tnfrsf1btm1.2Gkl/Tnfrsf1btm1.2Gkl
Genetic
Background
involves: C57BL/6 * C57BL/6J
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Tnfrsf1btm1.2Gkl mutation (0 available); any Tnfrsf1b mutation (41 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
normal phenotype
• mice are born at the expected ratios, are viable, and fertile and do not display any spontaneous phenotypes




Genotype
MGI:6195613
cx2
Allelic
Composition
Tnftm2Gkl/Tnf+
Tnfrsf1btm1.2Gkl/Tnfrsf1btm1.2Gkl
Genetic
Background
involves: 129S/SvEv * C57BL/6 * C57BL/6J
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Tnfrsf1btm1.2Gkl mutation (0 available); any Tnfrsf1b mutation (41 available)
Tnftm2Gkl mutation (1 available); any Tnf mutation (48 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
cardiovascular system
• mice exhibit an exacerbated aortic valve stenosis than seen in single Tnftm2Gkl heterozygotes, with an increase of valve leaflet surface area and fibrosis
• disease-manifestation in heart valve leaflets occurs at earlier time points than in single Tnftm2Gkl heterozygotes
• an increase of T and B cell infiltration is seen in late stages of the disease in the aortic valve leaflets compared to single Tnftm2Gkl heterozygotes
• mice exhibit exacerbated aortic valve fibrosis compared to in single Tnftm2Gkl heterozygotes
• an increase of T and B cell infiltration is seen in late stages of the disease in the aortic valve leaflets compared to single Tnftm2Gkl heterozygotes

skeleton
• mice exhibit a more aggressive and destructive type of arthritis, exacerbated synovial hyperplasia, and bone destruction compared to single Tnftm2Gkl heterozygotes
• disease-manifestation in joints occurs at earlier time points than in single Tnftm2Gkl heterozygotes
• an increase of T and B cell infiltration is seen in late stages of the disease in the ankle joint compared to single Tnftm2Gkl heterozygotes

cellular
• valvular interstitial cells fail to become activated
• however, cultured valvular interstitial cells appear similar to wild-type cells and exhibit normal proliferation
• synovial fibroblast and valvular interstitial cell adhesion to a fibronectin substrate is reduced by almost 50% compared to the levels in single Tnftm2Gkl heterozygotes but is higher than in wild-type cells
• synovial fibroblasts fail to become activated
• however, cultured synovial fibroblasts appear similar to wild-type cells and exhibit normal proliferation

homeostasis/metabolism
• circulating TNF levels are elevated
• synovial fibroblasts and valvular interstitial cells show only 40-45% closure of a wound in culture compared to 70-80% closure in single Tnftm2Gkl heterozygotes and about 20% closure in wild-type cells

immune system
• an increase of T and B cell infiltration is seen in late stages of the disease in the aortic valve leaflets compared to single Tnftm2Gkl heterozygotes
• circulating TNF levels are elevated
• levels of secreted TNF-alpha in supernatants of cultured synovial fibroblasts and valvular interstitial cells are elevated
• mice exhibit a more aggressive and destructive type of arthritis, exacerbated synovial hyperplasia, and bone destruction compared to single Tnftm2Gkl heterozygotes
• disease-manifestation in joints occurs at earlier time points than in single Tnftm2Gkl heterozygotes
• an increase of T and B cell infiltration is seen in late stages of the disease in the ankle joint compared to single Tnftm2Gkl heterozygotes





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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
11/12/2024
MGI 6.24
The Jackson Laboratory