Microarray analysis of the Df1 mouse model of the 22q11 deletion syndrome
- 19 March 2005
- journal article
- Published by Springer Nature in Human Genetics
- Vol. 116 (6) , 486-496
- https://doi.org/10.1007/s00439-005-1274-3
Abstract
The 22q11 deletion syndrome (22q11DS; DiGeorge/velo-cardio-facial syndrome) primarily affects the structures comprising the pharyngeal arches and pouches resulting in arch artery, cardiac, parathyroid, thymus, palatal and craniofacial defects. Tbx1 haploinsufficiency is thought to account for the main structural anomalies observed in the 22q11DS. The Df1 deleted mouse provides a model for 22q11DS, the deletion reflecting Tbx1 haploinsufficiency in the context of the deletion of 21 adjacent genes. We examined the expression of genes in Df1 embryos at embryonic day (E) 10.5, a stage when the arch-artery phenotype is fully penetrant. Our aims were threefold, with our primary aim to identify differentially regulated genes. Second, we asked whether any of the genes hemizygous in Df1 were dosage compensated to wild type levels, and third we investigated whether genes immediately adjacent to the deletion were dysregulated secondary to a position effect. Utilisation of oligonulceotide arrays allowed us to achieve our aims with 9 out of 12 Df1 deleted genes passing the stringent statistical filtering applied. Several genes involved in vasculogenesis and cardiogenesis were validated by real time quantitative PCR (RTQPCR), including Connexin 45, a gene required for normal vascular development, and Dnajb9 a gene implicated in microvascular differentiation. There was no evidence of any dosage compensation of deleted genes, suggesting this phenomenon is rare, and no dysregulation of genes mapping immediately adjacent to the deletion was detected. However Crkl, another gene implicated in the 22q11DS phenotype, was found to be downregulated by microarray and RTQPCR.Keywords
This publication has 31 references indexed in Scilit:
- XTbx1 is a transcriptional activator involved in head and pharyngeal arch development in Xenopus laevisDevelopmental Dynamics, 2005
- Tbx1 regulates fibroblast growth factors in the anterior heart field through a reinforcing autoregulatory loop involving forkhead transcription factorsDevelopment, 2004
- Gene Targeting Reveals a Widespread Role for the High-Mobility-Group Transcription Factor Sox11 in Tissue RemodelingMolecular and Cellular Biology, 2004
- Tbx1has a dual role in the morphogenesis of the cardiac outflow tractDevelopment, 2004
- Transcriptional Compensation for Loss of an Allele of the Ini1 Tumor SuppressorPublished by Elsevier ,2004
- Direct autoregulation and gene dosage compensation by POU-domain transcription factor Brn3aDevelopment, 2003
- Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2−ΔΔCT MethodMethods, 2001
- Upregulation of the Cochaperone Mdg1 in Endothelial Cells Is Induced by Stress and during in Vitro AngiogenesisExperimental Cell Research, 2001
- The Nuclear Factor SPBP Contains Different Functional Domains and Stimulates the Activity of Various Transcriptional ActivatorsJournal of Biological Chemistry, 2000
- Holt-Oram syndrome is caused by mutations in TBX5, a member of the Brachyury (T) gene familyNature Genetics, 1997