Saraftm1c(KOMP)Wtsi
Targeted Allele Detail
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Symbol: |
Saraftm1c(KOMP)Wtsi |
Name: |
store-operated calcium entry-associated regulatory factor; targeted mutation 1c, Wellcome Trust Sanger Institute |
MGI ID: |
MGI:7509470 |
Synonyms: |
SARAFfl |
Gene: |
Saraf Location: Chr8:34621733-34638001 bp, + strand Genetic Position: Chr8, 20.9 cM, cytoband A3
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Alliance: |
Saraftm1c(KOMP)Wtsi page
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IMPC: |
Saraf gene page |
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Mutant Cell Line: |
EPD0613_2_B07 |
Germline Transmission: |
Earliest citation of germline transmission:
J:337869
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Parent Cell Line: |
JM8A3.N1 (ES Cell)
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Strain of Origin: |
C57BL/6N-Atm1Brd
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Project Collection: |
KOMP-CSD
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Allele Type: |
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Targeted (Conditional ready) |
Mutation: |
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Insertion
Vector: L1L2_Bact_P
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Mutation details: The L1L2_Bact_P cassette was inserted at position 34631810 of Chromosome 8 upstream of the critical exon 3 (Build GRCm39). The cassette is composed of an FRT site followed by lacZ sequence and a loxP site. This first loxP site is followed by a neomycin resistance gene under the control of the human beta-actin promoter, SV40 polyA, a second FRT site and a second loxP site. A third loxP site is inserted downstream of exon 3 at position 34631945. Exon 3 is thus flanked by loxP sites. A "conditional ready" (floxed) allele was created by flp recombinase expression in mice carrying this allele to remove the lacZ sequence and neo selection cassette, leaving exon 3 flanked by loxP sites. Further information on targeting strategies used for this and other IKMC alleles can be found at http://www.informatics.jax.org/mgihome/nomen/IKMC_schematics.shtml
(J:337869)
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View phenotypes and curated references for all genotypes (concatenated display).
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Mouse strains and cell lines
available from the International Mouse Strain Resource
(IMSR) |
Carrying this Mutation: |
Mouse Strains: 0 strains available
Cell Lines: 0 lines available
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Carrying any Saraf Mutation: |
22 strains or lines available
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Original: |
J:337869 Gataulin D, et al., Store-operated Ca(2+) entry regulatory factor alters murine metabolic state in an age-dependent manner via hypothalamic pathways. PNAS Nexus. 2023 Mar;2(3):pgad068 |
All: |
1 reference(s) |
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