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Generation of the Sotos syndrome deletion in mice
Authors:Anna M. Migdalska  Louise van der Weyden  Ozama Ismail  Alistair G. Rust  Mamunur Rashid  Jacqueline K. White  Gabriela Sánchez-Andrade  James R. Lupski  Darren W. Logan  Mark J. Arends  David J. Adams
Affiliation:1. Experimental Cancer Genetics, Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, CB10 1HH, UK
2. Mouse Genetics Project, Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, CB10 1HH, UK
3. Genetics of Instinctive Behaviour, Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, CB10 1HH, UK
4. Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, 77030, USA
5. Department of Pathology, Addenbrooke??s Hospital, University of Cambridge, Cambridge, CB2 0QQ, UK
Abstract:Haploinsufficiency of the human 5q35 region spanning the NSD1 gene results in a rare genomic disorder known as Sotos syndrome (Sotos), with patients displaying a variety of clinical features, including pre- and postnatal overgrowth, intellectual disability, and urinary/renal abnormalities. We used chromosome engineering to generate a segmental monosomy, i.e., mice carrying a heterozygous 1.5-Mb deletion of 36 genes on mouse chromosome 13 (4732471D19Rik-B4galt7), syntenic with 5q35.2?Cq35.3 in humans (Df(13)Ms2Dja +/? mice). Surprisingly Df(13)Ms2Dja +/? mice were significantly smaller for their gestational age and also showed decreased postnatal growth, in contrast to Sotos patients. Df(13)Ms2Dja +/? mice did, however, display deficits in long-term memory retention and dilation of the pelvicalyceal system, which in part may model the learning difficulties and renal abnormalities observed in Sotos patients. Thus, haploinsufficiency of genes within the mouse 4732471D19Rik?CB4galt7 deletion interval play important roles in growth, memory retention, and the development of the renal pelvicalyceal system.
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