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Inhibition of Caspase-mediated Anoikis Is Critical for Basic Fibroblast Growth Factor-sustained Culture of Human Pluripotent Stem Cells*

机译:抑制半胱天冬酶介导的失语症对于人类多能干细胞的碱性成纤维细胞生长因子持续培养至关重要。

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摘要

Apoptosis and proliferation are two dynamically and tightly regulated processes that together maintain the homeostasis of renewable tissues. Anoikis is a subtype of apoptosis induced by detachment of adherent cells from the extracellular matrix. By using the defined mTeSR1 medium and collecting freshly detached cells, we found here that human pluripotent stem (PS) cells including embryonic stem (ES) cells and induced pluripotent stem cells are subject to constant anoikis in culture, which is escalated in the absence of basic fibroblast growth factor (bFGF). Withdrawal of bFGF also promotes apoptosis and differentiation of the remaining adherent cells without affecting their cell cycle progression. Insulin-like growth factor 2 (IGF2) has previously been reported to act downstream of FGF signaling to support self-renewal of human ES cells. However, we found that IGF2 cannot substitute bFGF in the TeSR1-supported culture, although endogenous IGF signaling is required to sustain self-renewal of human ES cells. On the other hand, all of the bFGF withdrawal effects observed here can be markedly prevented by the caspase inhibitor z-VAD-FMK. We further demonstrated that the bFGF-repressed anoikis is dependent on activation of ERK and AKT and associated with inhibition of Bcl-2-interacting mediator of cell death and the caspase-ROCK1-myosin signaling. Anoikis is independent of pre-detachment apoptosis and differentiation of the cells. Because previous studies of human PS cells have been focused on attached cells, our findings revealed a neglected role of bFGF in sustaining self-renewal of human PS cells: preventing them from anoikis via inhibition of caspase activation.
机译:凋亡和增殖是两个动态且严格调控的过程,它们共同维持可再生组织的稳态。失语症是粘附细胞从细胞外基质脱离诱导的凋亡亚型。通过使用定义的mTeSR1培养基并收集新鲜分离的细胞,我们在这里发现人类多能干(PS)细胞(包括胚胎干(ES)细胞和诱导性多能干细胞)在培养过程中会受到恒定的厌氧刺激,如果没有碱性成纤维细胞生长因子(bFGF)。 bFGF的撤回也促进了其余贴壁细胞的凋亡和分化,而不影响它们的细胞周期进程。先前已报道胰岛素样生长因子2(IGF2)在FGF信号传导的下游起作用,以支持人类ES细胞的自我更新。但是,我们发现IGF2不能替代TeSR1支持的培养物中的bFGF,尽管需要内源性IGF信号来维持人类ES细胞的自我更新。另一方面,半胱天冬酶抑制剂z-VAD-FMK可以显着防止此处观察到的所有bFGF戒断作用。我们进一步证明,bFGF抑制的神经质依赖于ERK和AKT的激活,并与细胞死亡和caspase-ROCK1-肌球蛋白信号转导的Bcl-2相互作用介质的抑制有关。 Anoikis独立于细胞的分离前凋亡和分化。由于先前对人类PS细胞的研究都集中在附着细胞上,因此我们的发现揭示了bFGF在维持人类PS细胞自我更新中的作用被忽略:通过抑制caspase活化来防止它们失范。

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