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Effects of oxidative and thermal stresses on stress granule formation in human induced pluripotent stem cells

机译:氧化应激和热应激对人诱导多能干细胞应激颗粒形成的影响

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摘要

Stress Granules (SGs) are dynamic ribonucleoprotein aggregates, which have been observed in cells subjected to environmental stresses, such as oxidative stress and heat shock (HS). Although pluripotent stem cells (PSCs) are highly sensitive to oxidative stress, the role of SGs in regulating PSC self-renewal and differentiation has not been fully elucidated. Here we found that sodium arsenite (SA) and HS, but not hydrogen peroxide (H2O2), induce SG formation in human induced (hi) PSCs. Particularly, we found that these granules contain the well-known SG proteins (G3BP, TIAR, eIF4E, eIF4A, eIF3B, eIF4G, and PABP), were found in juxtaposition to processing bodies (PBs), and were disassembled after the removal of the stress. Moreover, we showed that SA and HS, but not H2O2, promote eIF2α phosphorylation in hiPSCs forming SGs. Analysis of pluripotent protein expression showed that HS significantly reduced all tested markers (OCT4, SOX2, NANOG, KLF4, L1TD1, and LIN28A), while SA selectively reduced the expression levels of NANOG and L1TD1. Finally, in addition to LIN28A and L1TD1, we identified DPPA5 (pluripotent protein marker) as a novel component of SGs. Collectively, these results provide new insights into the molecular cues of hiPSCs responses to environmental insults.
机译:应激颗粒(SGs​​)是动态核糖核蛋白聚集体,已在遭受环境应激(例如氧化应激和热休克(HS))的细胞中观察到。尽管多能干细胞(PSCs)对氧化应激高度敏感,但尚未完全阐明SGs在调节PSC自我更新和分化中的作用。在这里,我们发现亚砷酸钠(SA)和HS,而不是过氧化氢(H2O2)在人诱导的(hi)PSC中诱导SG的形成。特别是,我们发现这些颗粒包含众所周知的SG蛋白(G3BP,TIAR,eIF4E,eIF4A,eIF3B,eIF4G和PABP),并排放置在加工体(PBs)上,并在去除颗粒后被拆解。强调。此外,我们表明,SA和HS而不是H2O2可以促进hiPSC形成SG的eIF2α磷酸化。多能蛋白表达分析表明,HS显着降低了所有测试标记(OCT4,SOX2,NANOG,KLF4,L1TD1和LIN28A),而SA选择性降低了NANOG和L1TD1的表达水平。最后,除了LIN28A和L1TD1,我们还确定了DPPA5(多能蛋白标记)是SGs的新组成部分。总的来说,这些结果为hiPSCs对环境侵害反应的分子线索提供了新的见解。

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