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PPARγ population shift produces disease-related changes in molecular networks associated with metabolic syndrome

机译:PPARγ群体转移导致与代谢综合征相关的分子网络疾病相关变化

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Peroxisome proliferator-activated receptor gamma (PPARγ) is a key regulator of adipocyte differentiation and has an important role in metabolic syndrome. Phosphorylation of the receptor's ligand-binding domain at serine 273 has been shown to change the expression of a large number of genes implicated in obesity. The difference in gene expression seen when comparing wild-type phosphorylated with mutant non-phosphorylated PPARγ may have important consequences for the cellular molecular network, the state of which can be shifted from the healthy to a stable diseased state. We found that a group of differentially expressed genes are involved in bi-stable switches and form a core network, the state of which changes with disease progression. These findings support the idea that bi-stable switches may be a mechanism for locking the core gene network into a diseased state and for efficiently propagating perturbations to more distant regions of the network. A structural analysis of the PPARγ–RXRα dimer complex supports the hypothesis of a major structural change between the two states, and this may represent an important mechanism leading to the differential expression observed in the core network.. ? 2011 Macmillan Publishers Limited
机译:过氧化物酶体增殖物激活受体γ(PPARγ)是脂肪细胞分化的关键调节剂,在代谢综合征中具有重要作用。丝氨酸273上受体配体结合结构域的磷酸化已显示可改变与肥胖有关的大量基因的表达。比较野生型磷酸化的PPARγ和突变型非磷酸化的PPARγ时发现的基因表达差异可能会对细胞分子网络产生重要影响,其状态可以从健康状态转变为稳定的疾病状态。我们发现一组差异表达的基因参与双稳态开关并形成核心网络,其状态随疾病的进展而变化。这些发现支持以下观点:双稳态开关可能是一种机制,可将核心基因网络锁定为患病状态,并有效地将扰动传播到网络的更远区域。对PPARγ-RXRα二聚体复合物的结构分析支持了两种状态之间主要结构变化的假设,这可能是导致核心网络中差异表达的重要机制。 2011 Macmillan Publishers Limited

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