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PMID: 16330480 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

Deletion of long-range sequences at Sox10 compromises developmental expression in a mouse model of Waardenburg-Shah (WS4) syndrome.

Human molecular genetics ·Vol. 15 ·No. 2 ·2006-01-15 ·Pages 259-71

Antonellis A, Bennett WR, Menheniott TR, Prasad AB, Lee-Lin SQ, NISC Comparative Sequencing Program, Green ED, Paisley D, Kelsh RN, Pavan WJ, Ward A

Abstract

The transcription factor SOX10 is mutated in the human neurocristopathy Waardenburg-Shah syndrome (WS4), which is characterized by enteric aganglionosis and pigmentation defects. SOX10 directly regulates genes expressed in neural crest lineages, including the enteric ganglia and melanocytes. Although some SOX10 target genes have been reported, the mechanisms by which SOX10 expression is regulated remain elusive. Here, we describe a transgene-insertion mutant mouse line (Hry) that displays partial enteric aganglionosis, a loss of melanocytes, and decreased Sox10 expression in homozygous embryos. Mutation analysis of Sox10 coding sequences was negative, suggesting that non-coding regulatory sequences are disrupted. To isolate the Hry molecular defect, Sox10 genomic sequences were collected from multiple species, comparative sequence analysis was performed and software was designed (ExactPlus) to identify identical sequences shared among species. Mutation analysis of conserved sequences revealed a 15.9 kb deletion located 47.3 kb upstream of Sox10 in Hry mice. ExactPlus revealed three clusters of highly conserved sequences within the deletion, one of which shows strong enhancer potential in cultured melanocytes. These studies: (i) present a novel hypomorphic Sox10 mutation that results in a WS4-like phenotype in mice; (ii) demonstrate that a 15.9 kb deletion underlies the observed phenotype and likely removes sequences essential for Sox10 expression; (iii) combine a novel in silico method for comparative sequence analysis with in vitro functional assays to identify candidate regulatory sequences deleted in this strain. These studies will direct further analyses of Sox10 regulation and provide candidate sequences for mutation detection in WS4 patients lacking a SOX10-coding mutation.

MeSH Terms
Algorithms Animals Base Sequence/genetics Blotting, Southern Cells, Cultured Conserved Sequence/genetics DNA Mutational Analysis Embryo, Mammalian/metabolism Gene Components Gene Expression Regulation, Developmental High Mobility Group Proteins/genetics,metabolism In Situ Hybridization Luciferases Mice Mice, Transgenic Molecular Sequence Data SOXE Transcription Factors Sequence Analysis, DNA Sequence Deletion/genetics Species Specificity Transcription Factors/genetics,metabolism Transgenes/genetics Waardenburg Syndrome/genetics
Chemicals
High Mobility Group Proteins SOX10 protein, human SOXE Transcription Factors Sox10 protein, mouse Transcription Factors Luciferases
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Antonellis Anthony
Geome Technology Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Bennett William R
Menheniott Trevelyan R
Prasad Arjun B
Lee-Lin Shih-Queen
NISC Comparative Sequencing Program
Green Eric D
Paisley Derek
Kelsh Robert N
Pavan William J
Ward Andrew
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
2006-01-15
Epub
2005-00-05
Pages
259-71
Language
English
Region
England
NLM ID
9208958
Subset
IM
Grants
Medical Research Council · G0300415 · United Kingdom
Intramural NIH HHS · United States
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