在Caenorhabditis elegans Wnt通路中对基因表达变异的反控制
Ni Ji1, Teije C Middelkoop, Remco A Mentink
1Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.
Cell
|November 12, 2013
概括
研究了Caenorhabditis elegans神经细胞发育中的基因表达变异性. 发现反循环减少了变化,并确保了发育的稳健性.
科学领域:
- 发育生物学是发展生物学.
- 系统生物学 系统生物学
- 遗传学 是一个遗传学.
背景情况:
- 现型异质性源于基因表达的变异性,即使在基因相同的种群中也是如此.
- 了解控制基因表达变异的内生机制对于发育强度至关重要.
研究的目的:
- 通过使用Caenorhabditis elegans Q神经细胞发育来研究控制基因表达变异的机制.
- 确定影响霍克斯基因表达及其变异性的调节相互作用.
主要方法:
- 利用了Caenorhabditis elegans Q神经细胞的Wnt信号依赖的发展.
- 分析了基因表达分布,并确定了调控网络.
- 开发了一个最小模型来预测基因表达变异性.
主要成果:
- 在Caenorhabditis elegans突变体中扰乱Wnt通路活性,增加了控制神经细胞迁移的关键Hox基因的变异性.
- 发现了一个相互锁定的正负反循环网络.
- 积极和消极的反合作降低了变异性,同时保持了高的霍克斯基因表达.
结论:
- 基因网络架构显著影响基因表达的可变性.
- 反调节是确保基因表达的发育稳健性的关键机制.
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