Maria E Taskinen, Nicolas Pasquier, Aki Stubb, Shreya Joshi, Megan R Chastney, Paula Rasila, Sonja Vahlman, Joonas Sokka, Tapio Lönnberg, Lea Mikkola, Ras Trokovic, Johanna Ivaska
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引用次数: 0
Abstract
Integrin β1-mediated adhesion is dispensable in early mouse embryogenesis (pre-implantation) but indispensable post-implantation, suggesting distinct roles for β1-integrin-mediated adhesions in the naive (pre-implantation) versus primed (post-implantation) pluripotent stem cells (PSCs). We investigated the role of integrin β1 in regulating naive-like and primed human induced PSC (hiPSC) states. We find that integrin β1 is active in both in vitro. In primed hiPSCs, integrin β1 inhibition induces naive-like colony features, reduces actomyosin contraction and extracellular signal-regulated kinase (ERK) activity, and alters gene expression, indicative of more naive-like features. These resemble the dramatic reorganization of the colony morphology, actin cytoskeleton, and adhesions upon chemical reversion from primed to naive states of pluripotency. Importantly, functional and single-cell transcriptomics analyses demonstrate that integrin β1 inhibition attenuates colony morphology transitions in cells exiting naive pluripotency. These data reveal unprecedented integrin-dependent regulation of PSC states and demonstrate how integrin inhibitors may help to fine-tune hiPSC function and properties in vitro.
整合素β1介导的粘附在小鼠胚胎发育早期(着床前)是不可缺少的,但在着床后也是不可缺少的,这表明β1整合素介导的粘附在初始(着床前)和初始(着床后)多能干细胞(PSCs)中具有不同的作用。我们研究了整合素β1在调节naive-like和primer human induced PSC (hiPSC)状态中的作用。我们发现整合素β1在体外均有活性。在引物的hiPSCs中,整合素β1抑制诱导了幼稚样集落特征,减少了肌动球蛋白收缩和细胞外信号调节激酶(ERK)活性,并改变了基因表达,表明更多的幼稚样特征。这些类似于集落形态的戏剧性重组,肌动蛋白细胞骨架,以及从启动到初始多能状态的化学逆转的粘附。重要的是,功能和单细胞转录组学分析表明,整合素β1抑制减弱了原始多能性细胞的集落形态转变。这些数据揭示了前所未有的整合素依赖性PSC状态的调节,并证明了整合素抑制剂如何有助于微调体外hiPSC的功能和特性。
期刊介绍:
Stem Cell Reports publishes high-quality, peer-reviewed research presenting conceptual or practical advances across the breadth of stem cell research and its applications to medicine. Our particular focus on shorter, single-point articles, timely publication, strong editorial decision-making and scientific input by leaders in the field and a "scoop protection" mechanism are reasons to submit your best papers.