Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, United Kingdom.
Elife. 2022 May 18;11:e73656. doi: 10.7554/eLife.73656.
Cells sense and integrate external information from diverse sources that include mechanical cues. Shaping of tissues during development may thus require coordination between mechanical forces from morphogenesis and cell-cell signalling to confer appropriate changes in gene expression. By live-imaging Notch-induced transcription in real time, we have discovered that morphogenetic movements during gastrulation bring about an increase in activity-levels of a Notch-responsive enhancer. Mutations that disrupt the timing of gastrulation resulted in concomitant delays in transcription up-regulation that correlated with the start of mesoderm invagination. As a similar gastrulation-induced effect was detected when transcription was elicited by the intracellular domain NICD, it cannot be attributed to forces exerted on Notch receptor activation. A Notch-independent enhancer also exhibited a modest gastrulation-induced activity increase in the same stripe of cells. Together, these observations argue that gastrulation-associated forces act on the nucleus to modulate transcription levels. This regulation was uncoupled when the complex linking the nucleoskeleton and cytoskeleton (LINC) was disrupted, indicating a likely conduit. We propose that the coupling between tissue-level mechanics, arising from gastrulation, and enhancer activity represents a general mechanism for ensuring correct tissue specification during development and that Notch-dependent enhancers are highly sensitive to this regulation.
细胞感知并整合来自多种来源的外部信息,包括机械线索。因此,组织在发育过程中的形成可能需要形态发生和细胞间信号传导产生的机械力之间的协调,以赋予基因表达的适当变化。通过实时活细胞成像 Notch 诱导的转录,我们发现原肠胚形成过程中的形态发生运动导致 Notch 反应增强子的活性水平增加。破坏原肠胚形成时间的突变导致转录上调的同时延迟,这与中胚层内陷的开始相关。由于通过细胞内域 NICD 诱导转录时也检测到类似的原肠胚形成诱导效应,因此不能归因于施加在 Notch 受体激活上的力。一个 Notch 非依赖性增强子在相同的细胞条纹中也表现出适度的原肠胚形成诱导活性增加。这些观察结果表明,与原肠胚形成相关的力作用于核以调节转录水平。当破坏连接核骨架和细胞骨架的复合物 (LINC) 时,这种调节被解耦,表明可能的途径。我们提出,源自原肠胚形成的组织水平力学与增强子活性之间的耦合代表了在发育过程中确保正确组织特化的一般机制,并且 Notch 依赖性增强子对此调节非常敏感。