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Symbol
Name
ID
Chromosome
D4Mit170
DNA segment, Chr 4, Massachusetts Institute of Technology 170
MGI:92798
4
18 mapping experiments
Experiment Type Details Chromosome Reference
CROSS Cross Type: Intercross
4 J:24376 Beier DR, et al., Haplotype analysis of intra-specific backcross curly-tail mice confirms the localization of ct to chromosome 4. Mamm Genome. 1995 Apr;6(4):269-72
CROSS Cross Type: Backcross
4 J:63784 Engler P, et al., A linkage map of distal mouse chromosome 4 in the vicinity of Ssm1, a strain-specific modifier of methylation. Mamm Genome. 2000 Aug;11(8):694-5
CROSS Cross Type: Backcross
4 J:37223 Gould KA, et al., Genetic evaluation of candidate genes for the Mom1 modifier of intestinal neoplasia in mice. Genetics. 1996 Dec;144(4):1777-85
CROSS Cross Type: Backcross
4 J:39310 Pretsch W, et al., A second locus encoding elevated phosphoglycerate mutase activity (Pgam2e) maps to mouse chromosome 4. Mamm Genome. 1997 Apr;8(4):296-7
RI RI/RC Set: OcB
4 J:31555 Stassen AP, et al., Genetic composition of the recombinant congenic strains. Mamm Genome. 1996 Jan;7(1):55-8
RI RI/RC Set: SWXJ
4 J:30436 Svenson KL, et al., Strain distribution pattern for SSLP markers in the SWXJ recombinant inbred strain set: chromosomes 1 to 6. Mamm Genome. 1995 Dec;6(12):867-72
TEXT 4 J:29661 Herzog CR, et al., Allelic loss of distal chromosome 4 in mouse lung tumors localize a putative tumor suppressor gene to a region homologous with human chromosome 1p36. Oncogene. 1995 Nov 2;11(9):1811-5
TEXT-Physical Mapping 4 J:106743 Mouse Genome Informatics and NCBI UniSTS, UniSTS load for MIT markers. Database Download. 2006;
TEXT-QTL 4 J:63266 Cormier RT, et al., The Mom1AKR intestinal tumor resistance region consists of Pla2g2a and a locus distal to D4Mit64. Oncogene. 2000 Jun 29;19(28):3182-92
TEXT-QTL 4 J:111693 Hanlon P, et al., Three-locus and four-locus QTL interactions influence mouse insulin-like growth factor-I. Physiol Genomics. 2006 Jun 16;26(1):46-54
TEXT-QTL 4 J:117544 Kess D, et al., Identification of susceptibility loci for skin disease in a murine psoriasis model. J Immunol. 2006 Oct 1;177(7):4612-9
TEXT-QTL 4 J:98848 Lee GS, et al., A Gene(s) for All-trans-Retinoic Acid-Induced Forelimb Defects Mapped and Confirmed to Murine Chromosome 11. Genetics. 2005 May;170(1):345-53
TEXT-QTL 4 J:103483 Masinde GL, New quantitative trait loci that regulate wound healing in an intercross progeny from DBA/1J and 129x1/SvJ inbred strains of mice. Funct Integr Genomics. 2006 Apr;6(2):157-63
TEXT-QTL 4 J:107220 Peters LL, et al., Quantitative trait loci for baseline erythroid traits. Mamm Genome. 2006 Apr;17(4):298-309
TEXT-QTL 4 J:117546 Reeves GM, et al., Quantitative trait loci modulate vertebral morphology and mechanical properties in a population of 18-month-old genetically heterogeneous mice. Bone. 2007 Feb;40(2):433-43
TEXT-QTL 4 J:63674 Tucker RM, et al., Genetic control of glycoprotein 70 autoantigen production and its influence on immune complex levels and nephritis in murine lupus. J Immunol. 2000 Aug 1;165(3):1665-72
TEXT-QTL 4 J:91543 Wolf N, et al., Quantitative trait locus mapping for age-related cataract severity and synechia prevalence using four-way cross mice. Invest Ophthalmol Vis Sci. 2004 Jun;45(6):1922-9
TEXT-QTL 4 J:104047 Yu H, et al., Mapping the dominant wound healing and soft tissue regeneration QTL in MRL x CAST. Mamm Genome. 2005 Dec;16(12):918-24

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last database update
04/30/2024
MGI 6.23
The Jackson Laboratory