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Accumulation of the inner nuclear envelope protein Sun1 is pathogenic in progeric and dystrophic laminopathies

机译:内核被膜蛋白Sun1的积累在早衰和营养不良性椎病中是致病的

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摘要

Human LMNA gene mutations result in laminopathies that include Emery-Dreifuss muscular dystrophy (AD-EDMD) and Hutchinson-Gilford progeria, the premature aging syndrome (HGPS). The Lmna null (Lmna -/-) and progeroid LmnaΔ9 mutant mice are models for AD-EDMD and HGPS, respectively. Both animals develop severe tissue pathologies with abbreviated life spans. Like HGPS cells, Lmna -/- and LmnaΔ9 fibroblasts have typically misshapen nuclei. Unexpectedly, Lmna -/- or LmnaΔ9 mice that are also deficient for the inner nuclear membrane protein Sun1 show markedly reduced tissue pathologies and enhanced longevity. Concordantly, reduction of SUN1 overaccumulation in LMNA mutant fibroblasts and in cells derived from HGPS patients corrected nuclear defects and cellular senescence. Collectively, these findings implicate Sun1 protein accumulation as a common pathogenic event in Lmna -/-, LmnaΔ9, and HGPS disorders
机译:人类LMNA基因突变会导致包括艾默里-德里夫斯(Emery-Dreifuss)肌肉营养不良(AD-EDMD)和哈钦森-吉尔福德(Hutchinson-Gilford)早衰症(HGPS)的早衰症。 Lmna null(Lmna-/-)和早衰型LmnaΔ9突变小鼠分别是AD-EDMD和HGPS的模型。两只动物都患有严重的组织病理学,且寿命缩短。像HGPS细胞一样,Lmna-/-和LmnaΔ9成纤维细胞通常具有畸形的细胞核。出乎意料的是,Lmna-/-或LmnaΔ9小鼠也缺乏内核膜蛋白Sun1,它们的组织病理学显着降低,寿命延长。相应地,减少LMNA突变型成纤维细胞和HGPS患者来源的细胞中SUN1的过度积累可纠正核缺陷和细胞衰老。总的来说,这些发现暗示Sun1蛋白积累是Lmna-/-,LmnaΔ9和HGPS疾病中的常见致病事件。

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