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Phenotypes associated with this allele
Allele Symbol
Allele Name
Allele ID
G6pc2tm1.1Pesa
targeted mutation 1.1, Pere Santamaria
MGI:4461063
Summary 1 genotype
Jump to Allelic Composition Genetic Background Genotype ID
hm1
G6pc2tm1.1Pesa/G6pc2tm1.1Pesa NOD.129S2-G6pc2tm1.1Pesa MGI:4461133


Genotype
MGI:4461133
hm1
Allelic
Composition
G6pc2tm1.1Pesa/G6pc2tm1.1Pesa
Genetic
Background
NOD.129S2-G6pc2tm1.1Pesa
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
G6pc2tm1.1Pesa mutation (0 available); any G6pc2 mutation (24 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
immune system
N
• mice develop type 1 diabetes with the same incidence curve of NOD mice
• naive G6PC206-214-reactive Tg(TcraTcrbNY8.3)1Pesa CD8+ T cells fail to proliferate in the pancreatic lymph nodes unlike in NOD mice
• mice lack G6PC206-214-reactive CD8+ T cells unlike similarly treated NOD mice
• mice exhibit impaired recruitment of naive and preactivated G6PC206-214-reactive Tg(TcraTcrbNY8.3)1Pesa CD8+ T cells to inflamed islets compared with similarly treated NOD mice
• islet-associated T cells from prediabetic mice do not produce IFN-gamma in response to NRP-V7 peptide-pulsed antigen producing cells unlike similarly treated NOD cells

hematopoietic system
• naive G6PC206-214-reactive Tg(TcraTcrbNY8.3)1Pesa CD8+ T cells fail to proliferate in the pancreatic lymph nodes unlike in NOD mice
• mice lack G6PC206-214-reactive CD8+ T cells unlike similarly treated NOD mice
• mice exhibit impaired recruitment of naive and preactivated G6PC206-214-reactive Tg(TcraTcrbNY8.3)1Pesa CD8+ T cells to inflamed islets compared with similarly treated NOD mice

cellular
• naive G6PC206-214-reactive Tg(TcraTcrbNY8.3)1Pesa CD8+ T cells fail to proliferate in the pancreatic lymph nodes unlike in NOD mice





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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