抑制基因调节与细胞代谢同步发展
Justin J Cassidy1, Sebastian M Bernasek2, Rachael Bakker3
1Department of Molecular Biosciences, Northwestern University, Evanston, IL 60208, USA.
Cell
|July 30, 2019
概括
代谢变化影响动物的发育时间. 分层基因抑制有助于同步发育与新陈代谢,减少错误并可能缩短生殖周期.
科学领域:
- 发育生物学
- 系统生物学
- 遗传学
背景情况:
- 代谢条件显著影响动物的发育速度.
- 发育基因调节网络 (GRNs) 必须适应新陈代谢所要求的可变时间尺度.
研究的目的:
- 研究基因调控网络 (GRN) 中的多层压制机制如何与代谢波动同步.
- 了解降低代谢率如何影响基因抑制发生变化的发育错误.
主要方法:
- 在Drosophila中对抑制剂 (转录,mRNA,蛋白质稳定性,微RNA) 的实验性操纵.
- 使用数学模型在不同的代谢条件下模拟GRN动态.
- 测量发育错误率和基因表达的动态.
主要成果:
- 当代谢降低时,抑制剂的损失导致发育错误较少.
- 在降低代谢的情况下,消除microRNA抑制剂部分挽救了发育到成熟.
- 数学模型表明,较低的新陈代谢通过限制辅助抑制剂的影响来抑制发育错误.
- 实验数据显示,在降低代谢时,抑制剂损失对基因表达动态的影响较小.
结论:
- 通过抑制错误,分层抑制为发育基因调节网络提供了强度.
- 降低代谢可以减轻抑制剂缺陷引起的发育错误.
- 这种机制可能为实现更短的生殖周期提供一种进化途径.
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