Functional assessment of disease-associated regulatory variants in vivo using a versatile dual colour transgenesis strategy in zebrafish

Disruption of gene regulation by sequence variation in non-coding regions of the genome is now recognised as a significant cause of human disease and disease susceptibility. Sequence variants in cis-regulatory elements (CREs), the primary determinants of spatio-temporal gene regulation, can alter tr...

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Veröffentlicht in:PLoS genetics 2015-06, Vol.11 (6), p.e1005193-e1005193
Hauptverfasser: Bhatia, Shipra, Gordon, Christopher T, Foster, Robert G, Melin, Lucie, Abadie, Véronique, Baujat, Geneviève, Vazquez, Marie-Paule, Amiel, Jeanne, Lyonnet, Stanislas, van Heyningen, Veronica, Kleinjan, Dirk A
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Sprache:eng
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Zusammenfassung:Disruption of gene regulation by sequence variation in non-coding regions of the genome is now recognised as a significant cause of human disease and disease susceptibility. Sequence variants in cis-regulatory elements (CREs), the primary determinants of spatio-temporal gene regulation, can alter transcription factor binding sites. While technological advances have led to easy identification of disease-associated CRE variants, robust methods for discerning functional CRE variants from background variation are lacking. Here we describe an efficient dual-colour reporter transgenesis approach in zebrafish, simultaneously allowing detailed in vivo comparison of spatio-temporal differences in regulatory activity between putative CRE variants and assessment of altered transcription factor binding potential of the variant. We validate the method on known disease-associated elements regulating SHH, PAX6 and IRF6 and subsequently characterise novel, ultra-long-range SOX9 enhancers implicated in the craniofacial abnormality Pierre Robin Sequence. The method provides a highly cost-effective, fast and robust approach for simultaneously unravelling in a single assay whether, where and when in embryonic development a disease-associated CRE-variant is affecting its regulatory function.
ISSN:1553-7404
1553-7390
1553-7404
DOI:10.1371/journal.pgen.1005193