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限制迁移会增加 DNA 损伤,并独立抑制细胞周期。

Constricted migration increases DNA damage and independently represses cell cycle.

机构信息

Physical Sciences Oncology Center at Penn, University of Pennsylvania, Philadelphia, PA 19104.

Molecular and Cell Biophysics Lab, University of Pennsylvania, Philadelphia, PA 19104.

出版信息

Mol Biol Cell. 2018 Aug 8;29(16):1948-1962. doi: 10.1091/mbc.E18-02-0079. Epub 2018 May 9.

Abstract

Cell migration through dense tissues or small capillaries can elongate the nucleus and even damage it, and any impact on cell cycle has the potential to affect various processes including carcinogenesis. Here, nuclear rupture and DNA damage increase with constricted migration in different phases of cell cycle-which we show is partially repressed. We study several cancer lines that are contact inhibited or not and that exhibit diverse frequencies of nuclear lamina rupture after migration through small pores. DNA repair factors invariably mislocalize after migration, and an excess of DNA damage is evident as pan--nucleoplasmic foci of phosphoactivated ATM and γH2AX. Foci counts are suppressed in late cell cycle as expected of mitotic checkpoints, and migration of contact-inhibited cells through large pores into sparse microenvironments leads also as expected to cell-cycle reentry and no effect on a basal level of damage foci. Constricting pores delay such reentry while excess foci occur independent of cell-cycle phase. Knockdown of repair factors increases DNA damage independent of cell cycle, consistent with effects of constricted migration. Because such migration causes DNA damage and impedes proliferation, it illustrates a cancer cell fate choice of "go or grow."

摘要

细胞通过密集组织或小毛细血管的迁移可能会使细胞核伸长,甚至损伤细胞核,而对细胞周期的任何影响都有可能影响到包括致癌在内的各种过程。在这里,我们发现细胞核破裂和 DNA 损伤随着细胞周期不同阶段的受限迁移而增加,而这种迁移在一定程度上受到抑制。我们研究了几种接触抑制或不抑制的癌细胞系,这些细胞系在穿过小孔后,核层破裂的频率不同。DNA 修复因子在迁移后总是错误定位,过度的 DNA 损伤表现为磷酸化 ATM 和 γH2AX 的全核质点状聚集。如预期的有丝分裂检查点那样,在细胞周期晚期,焦点计数被抑制,而接触抑制的细胞通过大孔迁移到稀疏的微环境中,也会导致细胞周期重新进入,但对基本水平的损伤焦点没有影响。与预期的一样,限制孔会延迟这种重新进入,而过多的焦点则独立于细胞周期阶段出现。修复因子的敲低会导致 DNA 损伤增加,而与细胞周期无关,这与受限迁移的影响一致。由于这种迁移导致 DNA 损伤并阻碍增殖,因此它说明了癌细胞命运选择的“生长或转移”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb99/6232975/972d19ad9c59/mbc-29-1948-g001.jpg

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