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Multiple organ system defects and transcriptional dysregulation in the Nipbl(+/-) mouse, a model of Cornelia de Lange Syndrome. | LitMetric

AI Article Synopsis

  • - Cornelia de Lange Syndrome (CdLS) is a birth defect disorder often caused by mutations in the NIPBL gene, affecting chromosome cohesion and gene expression.
  • - In a study with mice carrying a mutation in the Nipbl gene, researchers observed several CdLS-related defects, including growth delays, facial abnormalities, and high early mortality rates.
  • - The research indicates that even a slight decrease in NIPBL levels (around 30%) leads to significant gene expression changes, particularly affecting genes related to body fat and potentially contributing to the symptoms of CdLS.

Article Abstract

Cornelia de Lange Syndrome (CdLS) is a multi-organ system birth defects disorder linked, in at least half of cases, to heterozygous mutations in the NIPBL gene. In animals and fungi, orthologs of NIPBL regulate cohesin, a complex of proteins that is essential for chromosome cohesion and is also implicated in DNA repair and transcriptional regulation. Mice heterozygous for a gene-trap mutation in Nipbl were produced and exhibited defects characteristic of CdLS, including small size, craniofacial anomalies, microbrachycephaly, heart defects, hearing abnormalities, delayed bone maturation, reduced body fat, behavioral disturbances, and high mortality (75-80%) during the first weeks of life. These phenotypes arose despite a decrease in Nipbl transcript levels of only approximately 30%, implying extreme sensitivity of development to small changes in Nipbl activity. Gene expression profiling demonstrated that Nipbl deficiency leads to modest but significant transcriptional dysregulation of many genes. Expression changes at the protocadherin beta (Pcdhb) locus, as well as at other loci, support the view that NIPBL influences long-range chromosomal regulatory interactions. In addition, evidence is presented that reduced expression of genes involved in adipogenic differentiation may underlie the low amounts of body fat observed both in Nipbl+/- mice and in individuals with CdLS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2730539PMC
http://dx.doi.org/10.1371/journal.pgen.1000650DOI Listing

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