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Assembling neural crest regulatory circuits into a gene regulatory network.

机译:将神经c调节电路组装到基因调节网络中。

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摘要

The neural crest is a multipotent stem celland#x2013;like population that gives rise to a wide range of derivatives in the vertebrate embryo including elements of the craniofacial skeleton and peripheral nervous system as well as melanocytes. The neural crest forms in a series of regulatory steps that include induction and specification of the prospective neural crest territoryand#x2013;neural plate border, specification of bona fide neural crest progenitors, and differentiation into diverse derivatives. These individual processes during neural crest ontogeny are controlled by regulatory circuits that can be assembled into a hierarchical gene regulatory network (GRN). Here we present an overview of the GRN that orchestrates the formation of cranial neural crest cells. Formulation of this network relies on information largely inferred from gene perturbation studies performed in several vertebrate model organisms. Our representation of the cranial neural crest GRN also includes information about direct regulatory interactions obtained from the cis-regulatory analyses performed to date, which increases the resolution of the architectural circuitry within the network.
机译:神经c是一种多能干细胞和类似的种群,在脊椎动物胚胎中产生多种衍生物,包括颅面骨架和周围神经系统以及黑素细胞。神经c的形成包括一系列调控步骤,包括对预期的神经c区域和#x2013的诱导和规格;神经板边界,真正的神经c祖细胞的规格以及分化为多种衍生物。神经c个体发育过程中的这些独立过程受调节电路控制,调节电路可组装成分级基因调节网络(GRN)。在这里,我们介绍了GRN的概述颅神经G细胞的形成。该网络的制定主要依赖于在几种脊椎动物模型生物中进行的基因扰动研究得出的信息。我们对颅神经c GRN的表示还包括有关从迄今为止进行的顺式调节分析中获得的直接调节相互作用的信息,这增加了网络中体系结构电路的分辨率。

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