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Actomyosin drives cancer cell nuclear dysmorphia and threatens genome stability

机译:肌动球蛋白驱动癌细胞核畸形并威胁基因组稳定性

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摘要

Altered nuclear shape is a defining feature of cancer cells. The mechanisms underlying nuclear dysmorphia in cancer remain poorly understood. Here we identify PPP1R12A and PPP1CB, two subunits of the myosin phosphatase complex that antagonizes actomyosin contractility, as proteins safeguarding nuclear integrity. Loss of PPP1R12A or PPP1CB causes nuclear fragmentation, nuclear envelope rupture, nuclear compartment breakdown and genome instability. Pharmacological or genetic inhibition of actomyosin contractility restores nuclear architecture and genome integrity in cells lacking PPP1R12A or PPP1CB. We detect actin filaments at nuclear envelope rupture sites and define the Rho-ROCK pathway as the driver of nuclear damage. Lamin A protects nuclei from the impact of actomyosin activity. Blocking contractility increases nuclear circularity in cultured cancer cells and suppresses deformations of xenograft nuclei in vivo. We conclude that actomyosin contractility is a major determinant of nuclear shape and that unrestrained contractility causes nuclear dysmorphia, nuclear envelope rupture and genome instability.
机译:改变的核形状是癌细胞的主要特征。癌症核畸变的潜在机制仍知之甚少。在这里,我们确定了PPP1R12A和PPP1CB,它们是肌球蛋白磷酸酶复合物的两个亚基,可拮抗放线菌素的收缩性,作为保护核完整性的蛋白质。 PPP1R12A或PPP1CB的丢失会导致核分裂,核膜破裂,核区室破裂和基因组不稳定。肌动蛋白收缩力的药理或遗传抑制作用可恢复缺乏PPP1R12A或PPP1CB的细胞的核结构和基因组完整性。我们在核膜破裂部位检测肌动蛋白丝,并将Rho-ROCK途径定义为核损伤的驱动因素。核纤层蛋白A保护细胞核不受放线菌素活性的影响。阻断收缩力可增加培养的癌细胞中的核圆度,并抑制体内异种移植核的变形。我们得出的结论是,肌动球蛋白的收缩力是核形状的主要决定因素,不受约束的收缩力会导致核畸形,核包膜破裂和基因组不稳定。

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