Department of Surgery, University of Calgary, Calgary, Canada.
PLoS One. 2011;6(11):e26484. doi: 10.1371/journal.pone.0026484. Epub 2011 Nov 30.
The Rho kinase pathway plays a key role in many early cell/tissue determination events that take place in embryogenesis. Rho and its downstream effector Rho kinase (ROCK) play pivotal roles in cell migration, apoptosis (membrane blebbing), cell proliferation/cell cycle, cell-cell adhesion and gene regulation. We and others have previously demonstrated that inhibition of ROCK blocks endoderm differentiation in embryonal carcinoma stem cells, however, the effect of ROCK inhibition on mesoderm and ectoderm specification has not been fully examined. In this study, the role of ROCK within the specification and differentiation of all three germ layers was examined.
METHODOLOGY/PRINCIPAL FINDINGS: P19 cells were treated with the specific ROCK inhibitor Y-27623, and increase in differentiation efficiency into neuro-ectodermal and mesodermal lineages was observed. However, as expected a dramatic decrease in early endodermal markers was observed when ROCK was inhibited. Interestingly, within these ROCK-inhibited RA treated cultures, increased levels of mesodermal or ectodermal markers were not observed, instead it was found that the pluripotent markers SSEA-1 and Oct-4 remained up-regulated similar to that seen in undifferentiated cultures. Using standard and widely accepted methods for reproducible P19 differentiation into all three germ layers, an enhancement of mesoderm and ectoderm differentiation with a concurrent loss of endoderm lineage specification was observed with Y-27632 treatment. Evidence would suggest that this effect is in part mediated through TGF-β and SMAD signaling as ROCK-inhibited cells displayed aberrant SMAD activation and did not return to a 'ground' state after the inhibition had been removed.
CONCLUSIONS/SIGNIFICANCE: Given this data and the fact that only a partial rescue of normal differentiation capacity occurred when ROCK inhibition was alleviated, the effect of ROCK inhibition on the differentiation capacity of pluripotent cell populations should be further examined to elucidate the role of the Rho-ROCK pathway in early cellular 'fate' decision making processes.
Rho 激酶途径在胚胎发生过程中发生的许多早期细胞/组织决定事件中起着关键作用。Rho 及其下游效应物 Rho 激酶(ROCK)在细胞迁移、细胞凋亡(细胞膜起泡)、细胞增殖/细胞周期、细胞-细胞黏附和基因调控中发挥关键作用。我们和其他人之前已经证明,ROCK 抑制阻止胚胎癌细胞干细胞的内胚层分化,然而,ROCK 抑制对内胚层和中胚层特化的影响尚未得到充分研究。在这项研究中,研究了 ROCK 在所有三个胚层的特化和分化中的作用。
方法/主要发现:用特异性 ROCK 抑制剂 Y-27623 处理 P19 细胞,观察到神经外胚层和中胚层谱系分化效率的增加。然而,正如预期的那样,当 ROCK 被抑制时,早期内胚层标记物的数量急剧下降。有趣的是,在这些 ROCK 抑制的 RA 处理培养物中,并未观察到中胚层或外胚层标记物的水平增加,而是发现多能标记物 SSEA-1 和 Oct-4 仍然上调,类似于未分化培养物。使用标准和广泛接受的方法可重现 P19 分化为所有三个胚层,用 Y-27632 处理观察到中胚层和外胚层分化增强,同时内胚层谱系特化丧失。有证据表明,这种效应部分是通过 TGF-β 和 SMAD 信号转导介导的,因为 ROCK 抑制的细胞显示出异常的 SMAD 激活,并且在抑制作用被消除后并未恢复到“基础”状态。
结论/意义:鉴于这些数据以及 ROCK 抑制缓解时仅发生正常分化能力的部分恢复,应进一步研究 ROCK 抑制对多能细胞群体分化能力的影响,以阐明 Rho-ROCK 途径在早期细胞“命运”决策过程中的作用。