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New Mutations at the Imprinted Gnas Cluster Show Gene Dosage Effects of Gs alpha in Postnatal Growth and Implicate XL alpha s in Bone and Fat Metabolism but Not in Suckling

  作者 Eaton, SA; Williamson, CM; Ball, ST; Beechey, CV; Moir, L; Edwards, J; Teboul, L; Maconochie, M; Peters, J  
  选自 期刊  Molecular and Cellular Biology;  卷期  2012年32-5;  页码  1017-1029  
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[摘要]The imprinted Gnas cluster is involved in obesity, energy metabolism, feeding behavior, and viability. Relative contribution of paternally expressed proteins XL alpha s, XLN1, and ALEX or a double dose of maternally expressed Gs alpha to phenotype has not been established. In this study, we have generated two new mutants (Ex1A-T-CON and Ex1A-T) at the Gnas cluster. Paternal inheritance of Ex1A-T-CON leads to loss of imprinting of Gs alpha, resulting in preweaning growth retardation followed by catch-up growth. Paternal inheritance of Ex1A-T leads to loss of imprinting of Gs alpha and loss of expression of XLas and XLN1. These mice have severe preweaning growth retardation and incomplete catch-up growth. They are fully viable probably because suckling is unimpaired, unlike mutants in which the expression of all the known paternally expressed Gnasxl proteins (XL alpha s, XLN1 and ALEX) is compromised. We suggest that loss of ALEX is most likely responsible for the suckling defects previously observed. In adults, paternal inheritance of Ex1A-T results in an increased metabolic rate and reductions in fat mass, leptin, and bone mineral density attributable to loss of XL alpha s. This is, to our knowledge, the first report describing a role for XL alpha s in bone metabolism. We propose that XL alpha s is involved in the regulation of bone and adipocyte metabolism.

 
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