Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ 08544.
Lewis Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544.
Proc Natl Acad Sci U S A. 2021 Jun 8;118(23). doi: 10.1073/pnas.2102691118.
Markers for the endoderm and mesoderm germ layers are commonly expressed together in the early embryo, potentially reflecting cells' ability to explore potential fates before fully committing. It remains unclear when commitment to a single-germ layer is reached and how it is impacted by external signals. Here, we address this important question in , a convenient model system in which mesodermal and endodermal fates are associated with distinct cellular movements during gastrulation. Systematically applying endoderm-inducing extracellular signal-regulated kinase (ERK) signals to the ventral medial embryo-which normally only receives a mesoderm-inducing cue-reveals a critical time window during which mesodermal cell movements and gene expression are suppressed by proendoderm signaling. We identify the ERK target gene () as the main cause of the ventral furrow suppression and use computational modeling to show that Hkb repression of the mesoderm-associated gene is sufficient to account for a broad range of transcriptional and morphogenetic effects. Our approach, pairing precise signaling perturbations with observation of transcriptional dynamics and cell movements, provides a general framework for dissecting the complexities of combinatorial tissue patterning.
内胚层和中胚层的标记通常在早期胚胎中共同表达,这可能反映了细胞在完全分化之前探索潜在命运的能力。目前尚不清楚何时达到单一胚层的分化,以及外部信号如何影响这一过程。在这里,我们在 中解决了这个重要的问题, 是一种方便的模式系统,其中中胚层和内胚层命运与原肠胚形成过程中不同的细胞运动相关联。系统地向腹内侧胚胎施加内胚层诱导的细胞外信号调节激酶(ERK)信号——正常情况下该胚胎仅接收中胚层诱导信号——揭示了一个关键的时间窗口,在此期间,原肠胚信号抑制中胚层细胞运动和基因表达。我们确定 ERK 靶基因 ()是抑制腹侧沟形成的主要原因,并通过计算建模表明 Hkb 对中胚层相关基因 的抑制足以解释广泛的转录和形态发生效应。我们的方法,将精确的信号干扰与转录动态和细胞运动的观察相结合,为解析组合组织模式形成的复杂性提供了一个通用框架。