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PMID: 11562466 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Genetic factors are major determinants of phenotypic variability in a mouse model of the DiGeorge/del22q11 syndromes.

Taddei I, Morishima M, Huynh T, Lindsay EA

Abstract

The del22q11 syndrome is associated with a highly variable phenotype despite the uniformity of the chromosomal deletion that causes the disease in most patients. Df1/+ mice, which model del22q11, present with reduced penetrance of cardiovascular defects similar to those seen in deleted patients but not with other del22q11-like findings. The reduced penetrance of cardiovascular defects is caused by the ability of mutant embryos to recover from a fourth pharyngeal arch artery growth abnormality that is fully penetrant in early embryos. Here we show that genetic background has a major effect on penetrance of cardiovascular defects by affecting this embryonic recovery process. This effect could not be explained by allelic variation at the haploid locus, and it is likely to be caused by genetic modifiers elsewhere in the genome. We also show that genetic factors control extension of the Df1/+ phenotype to include thymic and parathyroid anomalies, establishing the Df1 mouse as a model for the genetic analysis of three major features of human del22q11 syndrome. We found that in Df1/+ mice, as in human patients, expression of the heart and thymic phenotypes are essentially independent from each other, suggesting that they may be controlled by different genetic modifiers. These data provide a framework for our understanding of phenotypic variability in patients with del22q11 syndrome and the tools for its genetic dissection.

MeSH Terms
Animals Chromosome Deletion Crosses, Genetic DiGeorge Syndrome/genetics Disease Models, Animal Female Genetic Variation Genotype Humans Male Mediastinum/pathology Mice Mice, Inbred C57BL Parathyroid Glands/pathology Phenotype
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Taddei I
Department of Pediatrics (Cardiology), Baylor College of Medicine, 1 Baylor Plaza, Houston, TX 77030, USA.
Morishima M
Huynh T
Lindsay E A
References (19)
19 references, click to expand
  1. Velo-cardio-facial syndrome: frequency and extent of 22q11 deletions.
    Am J Med Genet. 1995 Jul 3;57(3):514-22 PMID: 7677167
  2. Monozygotic twins with chromosome 22q11 deletion and discordant phenotype.
    J Med Genet. 1995 Sep;32(9):746-8 PMID: 8544199
  3. Molecular definition of 22q11 deletions in 151 velo-cardio-facial syndrome patients.
    Am J Hum Genet. 1997 Sep;61(3):620-9 PMID: 9326327
  4. Spectrum of clinical features associated with interstitial chromosome 22q11 deletions: a European collaborative study.
    J Med Genet. 1997 Oct;34(10):798-804 PMID: 9350810
  5. Comparative mapping of the human 22q11 chromosomal region and the orthologous region in mice reveals complex changes in gene organization.
    Proc Natl Acad Sci U S A. 1997 Dec 23;94(26):14608-13 PMID: 9405660
  6. Phenotypic discordance in monozygotic twins with 22q11.2 deletion.
    Am J Med Genet. 1998 Jul 24;78(4):319-21 PMID: 9714432
  7. Cloning and comparative mapping of the DiGeorge syndrome critical region in the mouse.
    Genomics. 1998 Aug 15;52(1):37-43 PMID: 9740669
  8. Low-copy repeats mediate the common 3-Mb deletion in patients with velo-cardio-facial syndrome.
    Am J Hum Genet. 1999 Apr;64(4):1076-86 PMID: 10090893
  9. 22q11 deletion in DGS/VCFS monozygotic twins with discordant phenotypes.
    Genet Couns. 1999;10(1):43-9 PMID: 10191428
  10. A common molecular basis for rearrangement disorders on chromosome 22q11.
    Hum Mol Genet. 1999 Jul;8(7):1157-67 PMID: 10369860
  11. Congenital heart disease in mice deficient for the DiGeorge syndrome region.
    Nature. 1999 Sep 23;401(6751):379-83 PMID: 10517636
  12. Chromosome 22-specific low copy repeats and the 22q11.2 deletion syndrome: genomic organization and deletion endpoint analysis.
    Hum Mol Genet. 2000 Mar 1;9(4):489-501 PMID: 10699172
  13. DiGeorge syndrome with discordant phenotype in monozygotic twins.
    J Med Genet. 2000 Sep;37(9):E23 PMID: 10978370
  14. The 22q11 deletion syndromes.
    Hum Mol Genet. 2000 Oct;9(16):2421-6 PMID: 11005797
  15. Tbx1 haploinsufficieny in the DiGeorge syndrome region causes aortic arch defects in mice.
    Nature. 2001 Mar 1;410(6824):97-101 PMID: 11242049
  16. DiGeorge syndrome phenotype in mice mutant for the T-box gene, Tbx1.
    Nat Genet. 2001 Mar;27(3):286-91 PMID: 11242110
  17. TBX1 is responsible for cardiovascular defects in velo-cardio-facial/DiGeorge syndrome.
    Cell. 2001 Feb 23;104(4):619-29 PMID: 11239417
  18. Recovery from arterial growth delay reduces penetrance of cardiovascular defects in mice deleted for the DiGeorge syndrome region.
    Hum Mol Genet. 2001 Apr 15;10(9):997-1002 PMID: 11309372
  19. Submicroscopic deletions at 22q11.2: variability of the clinical picture and delineation of a commonly deleted region.
    Am J Med Genet. 1995 Mar 27;56(2):191-7 PMID: 7625444
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2001-09-25
Epub
2001-00-18
Pages
11428-31
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC58746
Subset
IM
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