首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Regulative recovery in the sea urchin embryo and the stabilizing role of fail-safe gene network wiring
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Regulative recovery in the sea urchin embryo and the stabilizing role of fail-safe gene network wiring

机译:海胆胚胎的调节性恢复和故障安全基因网络布线的稳定作用

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摘要

Design features that ensure reproducible and invariant embryonic processes are major characteristics of current gene regulatory network models. New c/s-regulatory studies on a gene regulatory network subcircuit activated early in the development of the sea urchin embryo reveal a sequence of encoded "fail-safe" regulatory devices. These ensure the maintenance of fate separation between skeletogenic and nonskeletogenic mesoderm lineages. An unexpected consequence of the network design revealed in the course of these experiments is that it enables the embryo to "recover" from regulatory interference that has catastrophic effects if this feature is disarmed. A reengineered regulatory system inserted into the embryo was used to prove how this system operates in vivo. Genomically encoded backup control circuitry thus provides the mechanism underlying a specific example of the regulative development for which the sea urchin embryo has long been famous.
机译:确保基因过程可重复和不变的设计特征是当前基因调控网络模型的主要特征。在海胆胚胎发育早期激活的基因调控网络子电路上的新c / s调控研究揭示了一系列编码的“故障安全”调控装置。这些确保了生骨骼和非生骨骼的中胚层谱系之间的命运分离。在这些实验过程中揭示的网络设计的意外结果是,如果解除此功能,它可使胚胎从具有灾难性影响的调节干扰中“恢复”。重新设计的调节系统被插入到胚胎中,以证明该系统如何在体内运作。因此,通过基因组编码的备用控制电路提供了一种机制,该机制是海胆胚胎长期以来广为人知的监管发展的特定示例。

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