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首页> 外文期刊>Human Molecular Genetics >The lipodystrophic hotspot lamin A p.R482W mutation deregulates the mesodermal inducer T/Brachyury and early vascular differentiation gene networks
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The lipodystrophic hotspot lamin A p.R482W mutation deregulates the mesodermal inducer T/Brachyury and early vascular differentiation gene networks

机译:Lipodystrophic Hotspot Lamin A p.R482W突变能够抑制中胚层诱导物T / BRACHYURY和早期血管分化基因网络

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摘要

The p. R482W hotspot mutation in A-type nuclear lamins causes familial partial lipodystrophy of Dunnigan-type (FPLD2), a lipodystrophic syndrome complicated by early onset atherosclerosis. Molecular mechanisms underlying endothelial cell dysfunction conferred by the lamin A mutation remain elusive. However, lamin A regulates epigenetic developmental pathways and mutations could perturb these functions. Here, we demonstrate that lamin A R482W elicits endothelial differentiation defects in a developmental model of FPLD2. Genome modeling in fibroblasts from patients with FPLD2 caused by the lamin A R482W mutation reveals repositioning of the mesodermal regulator T/Brachyury locus towards the nuclear center relative to normal fibroblasts, suggesting enhanced activation propensity of the locus in a developmental model of FPLD2. Addressing this issue, we report phenotypic and transcriptional alterations in mesodermal and endothelial differentiation of induced pluripotent stem cells we generated from a patient with R482W-associated FPLD2. Correction of the LMNA mutation ameliorates R482W-associated phenotypes and gene expression. Transcriptomics links endothelial differentiation defects to decreased Polycomb-mediated repression of the T/Brachyury locus and over-activation of T target genes. Binding of the Polycomb repressor complex 2 to T/Brachyury is impaired by the mutated lamin A network, which is unable to properly associate with the locus. This leads to a deregulation of vascular gene expression over time. By connecting a lipodystrophic hotspot lamin A mutation to a disruption of early mesodermal gene expression and defective endothelial differentiation, we propose that the mutation rewires the fate of several lineages, resulting in multi-tissue pathogenic phenotypes.
机译:A型核层粘连蛋白中的p.R482W热点突变导致家族性邓尼根型部分性脂肪营养不良(FPLD2),这是一种伴随早发性动脉粥样硬化的脂肪营养不良综合征。层粘连蛋白A突变导致内皮细胞功能障碍的分子机制尚不清楚。然而,层粘连蛋白A调节表观遗传发育途径,突变可能干扰这些功能。在这里,我们证明了层粘连蛋白A R482W在FPLD2的发育模型中诱导内皮细胞分化缺陷。由层粘连蛋白A R482W突变引起的FPLD2患者的成纤维细胞基因组建模揭示了中胚层调节因子T/Brachyury位点相对于正常成纤维细胞向核中心的重新定位,表明在FPLD2发育模型中该位点的激活倾向增强。针对这一问题,我们报告了一例R482W相关FPLD2患者诱导的多能干细胞中胚层和内皮细胞分化的表型和转录改变。LMNA突变的纠正改善了R482W相关表型和基因表达。转录组学将内皮细胞分化缺陷与多克隆介导的T/Brachyury位点抑制减少和T靶基因过度激活联系起来。多梳阻遏复合物2与T/Brachyury的结合受到突变的层粘连蛋白A网络的损害,该网络无法与该位点正确关联。随着时间的推移,这会导致血管基因表达的去调控。通过将脂肪营养不良热点层粘连蛋白a突变与早期中胚层基因表达中断和内皮细胞分化缺陷联系起来,我们认为该突变重新决定了几个谱系的命运,导致多组织致病表型。

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  • 来源
    《Human Molecular Genetics》 |2018年第8期|共13页
  • 作者单位

    Univ Oslo Inst Basic Med Sci Dept Mol Med Fac Med POB 1112 N-0317 Oslo Norway;

    Sorbonne Univ St Antoine Res Ctr Inst Cardiometab &

    Nutr Inserm UMR S938 F-75012 Paris France;

    UPMC Univ Paris 6 Sorbonne Univ UMR ICAN S1166 F-75013 Paris France;

    Univ Oslo Inst Basic Med Sci Dept Mol Med Fac Med POB 1112 N-0317 Oslo Norway;

    Sorbonne Univ St Antoine Res Ctr Inst Cardiometab &

    Nutr Inserm UMR S938 F-75012 Paris France;

    Sorbonne Univ St Antoine Res Ctr Inst Cardiometab &

    Nutr Inserm UMR S938 F-75012 Paris France;

    Sorbonne Univ St Antoine Res Ctr Inst Cardiometab &

    Nutr Inserm UMR S938 F-75012 Paris France;

    Univ Oslo Inst Basic Med Sci Dept Mol Med Fac Med POB 1112 N-0317 Oslo Norway;

    Univ Oslo Inst Basic Med Sci Dept Mol Med Fac Med POB 1112 N-0317 Oslo Norway;

    UPMC Univ Paris 6 Sorbonne Univ UMR ICAN S1166 F-75013 Paris France;

    Sorbonne Univ St Antoine Res Ctr Inst Cardiometab &

    Nutr Inserm UMR S938 F-75012 Paris France;

    Univ Oslo Inst Basic Med Sci Dept Mol Med Fac Med POB 1112 N-0317 Oslo Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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