| Literature DB >> 22019781 |
Xinxian Deng1, Joseph B Hiatt, Di Kim Nguyen, Sevinc Ercan, David Sturgill, LaDeana W Hillier, Felix Schlesinger, Carrie A Davis, Valerie J Reinke, Thomas R Gingeras, Jay Shendure, Robert H Waterston, Brian Oliver, Jason D Lieb, Christine M Disteche.
Abstract
Many animal species use a chromosome-based mechanism of sex determination, which has led to the coordinate evolution of dosage-compensation systems. Dosage compensation not only corrects the imbalance in the number of X chromosomes between the sexes but also is hypothesized to correct dosage imbalance within cells that is due to monoallelic X-linked expression and biallelic autosomal expression, by upregulating X-linked genes twofold (termed 'Ohno's hypothesis'). Although this hypothesis is well supported by expression analyses of individual X-linked genes and by microarray-based transcriptome analyses, it was challenged by a recent study using RNA sequencing and proteomics. We obtained new, independent RNA-seq data, measured RNA polymerase distribution and reanalyzed published expression data in mammals, C. elegans and Drosophila. Our analyses, which take into account the skewed gene content of the X chromosome, support the hypothesis of upregulation of expressed X-linked genes to balance expression of the genome.Entities:
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Year: 2011 PMID: 22019781 PMCID: PMC3576853 DOI: 10.1038/ng.948
Source DB: PubMed Journal: Nat Genet ISSN: 1061-4036 Impact factor: 38.330