|  Help  |  About  |  Contact Us

Publication : A novel intergenic ETnII-β insertion mutation causes multiple malformations in polypodia mice.

First Author  Lehoczky JA Year  2013
Journal  PLoS Genet Volume  9
Issue  12 Pages  e1003967
PubMed ID  24339789 Mgi Jnum  J:207896
Mgi Id  MGI:5559916 Doi  10.1371/journal.pgen.1003967
Citation  Lehoczky JA, et al. (2013) A novel intergenic ETnII-beta insertion mutation causes multiple malformations in polypodia mice. PLoS Genet 9(12):e1003967
abstractText  Mouse early transposon insertions are responsible for ~10% of spontaneous mutant phenotypes. We previously reported the phenotypes and genetic mapping of Polypodia, (Ppd), a spontaneous, X-linked dominant mutation with profound effects on body plan morphogenesis. Our new data shows that mutant mice are not born in expected Mendelian ratios secondary to loss after E9.5. In addition, we refined the Ppd genetic interval and discovered a novel ETnII-beta early transposon insertion between the genes for Dusp9 and Pnck. The ETn inserted 1.6 kb downstream and antisense to Dusp9 and does not disrupt polyadenylation or splicing of either gene. Knock-in mice engineered to carry the ETn display Ppd characteristic ectopic caudal limb phenotypes, showing that the ETn insertion is the Ppd molecular lesion. Early transposons are actively expressed in the early blastocyst. To explore the consequences of the ETn on the genomic landscape at an early stage of development, we compared interval gene expression between wild-type and mutant ES cells. Mutant ES cell expression analysis revealed marked upregulation of Dusp9 mRNA and protein expression. Evaluation of the 5' LTR CpG methylation state in adult mice revealed no correlation with the occurrence or severity of Ppd phenotypes at birth. Thus, the broad range of phenotypes observed in this mutant is secondary to a novel intergenic ETn insertion whose effects include dysregulation of nearby interval gene expression at early stages of development.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

14 Bio Entities

Trail: Publication

0 Expression