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A developmental gene regulatory network for C. elegans anchor cell invasion

机译:用于埃贝罗斯锚细胞侵袭的C. legans的发育基因调节网络

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摘要

Cellular invasion is a key part of development, immunity and disease. Using an in vivo model of Caenorhabditis elegans anchor cell invasion, we characterize the gene regulatory network that promotes cell invasion. The anchor cell is initially specified in a stochastic cell fate decision mediated by Notch signaling. Previous research has identified four conserved transcription factors, fos-1 (Fos), egl-43 (EVI1/MEL), hlh-2 (E/Daughterless) and nhr-67 (NR2E1/TLX), that mediate anchor cell specification and/or invasive behavior. Connections between these transcription factors and the underlying cell biology that they regulate are poorly understood. Here, using genome editing and RNA interference, we examine transcription factor interactions before and after anchor cell specification. Initially, these transcription factors function independently of one another to regulate LIN-12 (Notch) activity. Following anchor cell specification, egl-43, hlh-2 and nhr-67 function largely parallel to fos-1 in a type I coherent feed-forward loop with positive feedback to promote invasion. Together, these results demonstrate that the same transcription factors can function in cell fate specification and differentiated cell behavior, and that a gene regulatory network can be rapidly assembled to reinforce a post-mitotic, pro-invasive state.
机译:细胞入侵是发展,免疫和疾病的关键部分。使用Caenorhabditiseviss的体内模型锚细胞侵袭,我们表征了促进细胞侵袭的基因调节网络。锚细胞最初在由陷波信号传导介导的随机电池命运决定中指定。先前的研究已经确定了四种保守的转录因子,FOS-1(FOS),EGL-43(EVI1 / MEL),HLH-2(E /女性)和NHR-67(NR2E1 / TLX),其介导锚细胞规格和/或侵入行为。这些转录因子与他们调节的潜在细胞生物学之间的连接很差。这里,使用基因组编辑和RNA干扰,我们检查锚细胞规格之前和之后的转录因子相互作用。最初,这些转录因子彼此独立地函数以调节LIN-12(Notch)活动。在锚细胞规格之后,EGL-43,HLH-2和NHR-67在I型相干前馈回路中的FOS-1函数大致平行于FOS-1,其具有正反馈以促进侵袭。这些结果表明,相同的转录因子可以在细胞命运规范和分化细胞行为中起作用,并且可以迅速组装基因调节网络以增强型后的促侵入状态。

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