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A Werner syndrome stem cell model unveils heterochromatin alterations as a driver of human aging

机译:Werner综合征干细胞模型揭示异染色质改变是人类衰老的驱动力

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摘要

Werner syndrome (WS) is a premature aging disorder caused by WRN protein deficiency. Here, we report on the generation of a human WS model in human embryonic stem cells (ESCs). Differentiation of WRN-null ESCs to mesenchymal stem cells (MSCs) recapitulates features of premature cellular aging, a global loss of H3K9me3, and changes in heterochromatin architecture. We show that WRN associates with heterochromatin proteins SUV39H1 and HP1α and nuclear lamina-heterochromatin anchoring protein LAP2β. Targeted knock-in of catalytically inactive SUV39H1 in wild-type MSCs recapitulates accelerated cellular senescence, resembling WRN-deficient MSCs. Moreover, decrease in WRN and heterochromatin marks are detected in MSCs from older individuals. Our observations uncover a role for WRN in maintaining heterochromatin stability and highlight heterochromatin disorganization as a potential determinant of human aging.
机译:Werner综合征(WS)是由WRN蛋白缺乏引起的过早衰老疾病。在这里,我们报道了人类胚胎干细胞(ESC)中人类WS模型的产生。 WRN空ESCs分化为间充质干细胞(MSCs)概括了过早的细胞衰老,H3K9me3的整体损失和异染色质体系结构变化的特征。我们显示,WRN与异染色质蛋白SUV39H1和HP1α和核纤层-异染色质锚定蛋白LAP2β相关。在野生型MSCs中无催化作用的SUV39H1的靶向敲除概括了加速的细胞衰老,类似于WRN缺陷型MSCs。而且,在来自老年个体的MSC中检测到WRN和异染色质标记的降低。我们的发现揭示了WRN在维持异染色质稳定性中的作用,并强调了异染色质的混乱是人类衰老的潜在决定因素。

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