Literature DB >> 17334657

Loss of Chd7 function in gene-trapped reporter mice is embryonic lethal and associated with severe defects in multiple developing tissues.

Elizabeth A Hurd1, Patrice L Capers, Marsha N Blauwkamp, Meredith E Adams, Yehoash Raphael, Heather K Poucher, Donna M Martin.   

Abstract

CHD7 is a novel chromodomain gene mutated in 60%-80% of humans with CHARGE syndrome, a multiple congenital anomaly condition characterized by ocular coloboma, heart defects, atresia of the choanae, retarded growth and development, genital hypoplasia, and characteristic ear abnormalities including deafness. Phenotypic features of CHARGE are highly variable and incompletely penetrant. To explore developmental roles of CHD7, we generated mice carrying the Chd7(Gt) allele from a Chd7-deficient, gene-trapped lacZ reporter ES cell line. RT-PCR of embryo RNA demonstrated significantly reduced levels of wild-type transcript in Chd7(Gt/Gt) embryos. Chd7(Gt/Gt) embryos survive only up to embryonic day 10.5 (E10.5). Chd7(Gt/+) male and female mice are viable, small, and exhibit variable degrees of head-bobbing and circling, consistent with vestibular dysfunction. Paint-filling of E16.5 heterozygous inner ears revealed defects of the semicircular canals. The pattern of beta-galactosidase activity in Chd7(Gt/+) embryos mimics Chd7 mRNA expression in wild-type embryos, confirming the fidelity of the lacZ reporter. We observed tissue-specific beta-galactosidase in the E12.5 and E14.5 Chd7(Gt/+) brain, pituitary, ear, heart, and craniofacial structures, indicating survival of Chd7(Gt/+) cells in CHARGE-relevant organs. These studies demonstrate the utility of Chd7(Gt) as a reporter-tagged loss-of-function allele for future studies exploring developmental mechanisms of Chd7 deficiency.

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Year:  2007        PMID: 17334657     DOI: 10.1007/s00335-006-0107-6

Source DB:  PubMed          Journal:  Mamm Genome        ISSN: 0938-8990            Impact factor:   2.957


  44 in total

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Authors:  R K Jackler; W M Luxford; W F House
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6.  Growth failure and pituitary function in CHARGE and VATER associations.

Authors:  V V Khadilkar; F J Cameron; R Stanhope
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Authors:  D G Kim; H M Kang; S K Jang; H S Shin
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8.  Choanal atresia and associated multiple anomalies.

Authors:  B D Hall
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Journal:  Genetics       Date:  1995-05       Impact factor: 4.562

10.  Dosage requirement of Pitx2 for development of multiple organs.

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  86 in total

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Authors:  Joseph A Micucci; Wanda S Layman; Elizabeth A Hurd; Ethan D Sperry; Sophia F Frank; Mark A Durham; Donald L Swiderski; Jennifer M Skidmore; Peter C Scacheri; Yehoash Raphael; Donna M Martin
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Authors:  Timothy S Hartshorne; Kasee K Stratton; Conny M A van Ravenswaaij-Arts
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5.  Genomic distribution of CHD7 on chromatin tracks H3K4 methylation patterns.

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Journal:  Genome Res       Date:  2009-02-27       Impact factor: 9.043

Review 6.  Inner ear manifestations in CHARGE: Abnormalities, treatments, animal models, and progress toward treatments in auditory and vestibular structures.

Authors:  Daniel I Choo; Kareem O Tawfik; Donna M Martin; Yehoash Raphael
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7.  Autism-linked CHD gene expression patterns during development predict multi-organ disease phenotypes.

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8.  Guilty as CHARGED: p53's expanding role in disease.

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9.  CHD7 regulates cardiovascular development through ATP-dependent and -independent activities.

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Review 10.  Neural crest contributions to the ear: Implications for congenital hearing disorders.

Authors:  K Elaine Ritter; Donna M Martin
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