C57BL/6-Atm1Brd Lpar1tm1a(EUCOMM)Wtsi/Flmg
Status | Available to order |
EMMA ID | EM:09092 |
International strain name | C57BL/6-Atm1Brd Lpar1tm1a(EUCOMM)Wtsi/Flmg |
Alternative name | B6-Lpar1 |
Strain type | Targeted Mutant Strains |
Allele/Transgene symbol | Lpar1tm1a(EUCOMM)Wtsi |
Gene/Transgene symbol | Lpar1 |
Information from provider
Provider | Vassilis Aidinis |
Provider affiliation | BSRC Al. Fleming |
Additional owner | contact Kay Martin |
Genetic information | Mouse line originated from EUCOMM clone EPD0496_2_C05 injected into B6 albino blastocysts. |
Phenotypic information | Homozygous:Not knownHeterozygous:No overt phenotype in heterozygous knock-out animals. |
References |
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Homozygous fertile | not known |
Homozygous viable | not known |
Homozygous matings required | not known |
Immunocompromised | not known |
Information from EMMA
Archiving centre | B.S.R.C. Alexander Fleming, Vari, Greece |
Animals used for archiving | heterozygous C57BL/6 |
Disease and phenotype information
IMPC phenotypes (gene matching)
MGI phenotypes (gene matching)
- decreased bone mineral density / MGI
- abnormal craniofacial morphology / MGI
- short snout / MGI
- exencephaly / MGI
- abnormal Schwann cell morphology / MGI
- decreased Schwann cell number / MGI
- decreased body height / MGI
- decreased body weight / MGI
- decreased body size / MGI
- ocular hypertelorism / MGI
- hypoactivity / MGI
- abnormal suckling behavior / MGI
- postnatal growth retardation / MGI
- increased dopamine level / MGI
- hemorrhage / MGI
- abnormal sciatic nerve morphology / MGI
- nervous system phenotype / MGI
- long incisors / MGI
- abnormal serotonin level / MGI
- abnormal amino acid level / MGI
- decreased body mass index / MGI
- decreased prepulse inhibition / MGI
- decreased total body fat amount / MGI
- postnatal lethality, incomplete penetrance / MGI
- neonatal lethality, incomplete penetrance / MGI
- perinatal lethality, incomplete penetrance / MGI
- decreased body fat mass / MGI
Literature references
- Atx regulates skeletal muscle regeneration via LPAR1 and promotes hypertrophy.;Ray Rashmi, Sinha Sunita, Aidinis Vassilis, Rai Vivek, ;2021;Cell reports;34;108809; 33657371
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