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Symbol
Name
ID
Chromosome
D5Mnl25e
DNA segment, Chr 5, Massachusetts Neurogenetics Laboratory 25, expressed
MGI:107753
5
17 mapping experiments
Experiment Type Details Chromosome Reference
CROSS Cross Type: Backcross
5 J:9764 Cheng SV, et al., Synteny on mouse chromosome 5 of homologs for human DNA loci linked to the Huntington disease gene. Genomics. 1989 Apr;4(3):419-26
CROSS Cross Type: Backcross
5 J:9764 Cheng SV, et al., Synteny on mouse chromosome 5 of homologs for human DNA loci linked to the Huntington disease gene. Genomics. 1989 Apr;4(3):419-26
CROSS Cross Type: Backcross
5 J:9764 Cheng SV, et al., Synteny on mouse chromosome 5 of homologs for human DNA loci linked to the Huntington disease gene. Genomics. 1989 Apr;4(3):419-26
CROSS Cross Type: Backcross
5 J:9505 Geissler EN, et al., Genetic analysis of the dominant white-spotting (W) region on mouse chromosome 5: identification of cloned DNA markers near W. Proc Natl Acad Sci U S A. 1988 Dec;85(24):9635-9
CROSS Cross Type: Backcross
5 J:19185 Grosson CL, et al., Synteny conservation of the Huntington's disease gene and surrounding loci on mouse Chromosome 5. Mamm Genome. 1994 Jul;5(7):424-8
CROSS Cross Type: Backcross
5 J:496 Koizumi T, et al., Linkage, but not gene order, of homologous loci, including alpha-L-iduronidase (Idua), is conserved in the Huntington disease region of the mouse and human genomes. Mamm Genome. 1992;3(1):23-7
RI RI/RC Set: BXD
5 J:9764 Cheng SV, et al., Synteny on mouse chromosome 5 of homologs for human DNA loci linked to the Huntington disease gene. Genomics. 1989 Apr;4(3):419-26
RI RI/RC Set: AKXD
5 J:9764 Cheng SV, et al., Synteny on mouse chromosome 5 of homologs for human DNA loci linked to the Huntington disease gene. Genomics. 1989 Apr;4(3):419-26
RI RI/RC Set: BXH
5 J:9764 Cheng SV, et al., Synteny on mouse chromosome 5 of homologs for human DNA loci linked to the Huntington disease gene. Genomics. 1989 Apr;4(3):419-26
TEXT-Cytogenetic Localization 5 J:9505 Geissler EN, et al., Genetic analysis of the dominant white-spotting (W) region on mouse chromosome 5: identification of cloned DNA markers near W. Proc Natl Acad Sci U S A. 1988 Dec;85(24):9635-9
TEXT-Genetic Cross 5 J:9505 Geissler EN, et al., Genetic analysis of the dominant white-spotting (W) region on mouse chromosome 5: identification of cloned DNA markers near W. Proc Natl Acad Sci U S A. 1988 Dec;85(24):9635-9
TEXT-Genetic Cross 5 J:9505 Geissler EN, et al., Genetic analysis of the dominant white-spotting (W) region on mouse chromosome 5: identification of cloned DNA markers near W. Proc Natl Acad Sci U S A. 1988 Dec;85(24):9635-9
TEXT-Genetic Cross 5 J:19442 Nagle DL, et al., Structural analysis of chromosomal rearrangements associated with the developmental mutations Ph, W19H, and Rw on mouse chromosome 5. Proc Natl Acad Sci U S A. 1994 Jul 19;91(15):7237-41
TEXT-Genetic Cross 5 J:20140 Wydner KS, et al., Use of an intron polymorphism to localize the tropoelastin gene to mouse chromosome 5 in a region of linkage conservation with human chromosome 7. Genomics. 1994 Sep 1;23(1):125-31
TEXT-Physical Mapping 5 J:29686 Nagle DL, et al., Physical mapping of the Tec and Gabrb1 loci reveals that the Wsh mutation on mouse chromosome 5 is associated with an inversion. Hum Mol Genet. 1995 Nov;4(11):2073-9
TEXT-Physical Mapping 5 J:29686 Nagle DL, et al., Physical mapping of the Tec and Gabrb1 loci reveals that the Wsh mutation on mouse chromosome 5 is associated with an inversion. Hum Mol Genet. 1995 Nov;4(11):2073-9
TEXT-Physical Mapping 5 J:19442 Nagle DL, et al., Structural analysis of chromosomal rearrangements associated with the developmental mutations Ph, W19H, and Rw on mouse chromosome 5. Proc Natl Acad Sci U S A. 1994 Jul 19;91(15):7237-41

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last database update
12/10/2024
MGI 6.24
The Jackson Laboratory