细菌信号网络中的调节静态性允许对快速环境变化的耐受性
Jeffrey N Carey1, Erin L Mettert2, Manuela Roggiani3
1Graduate Group in Biochemistry and Molecular Biophysics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA; School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Cell
|March 6, 2018
概括
微生物使用注对冲来应对不断变化的条件. 氧气会触发大肠杆菌的基因表达,使得即使氧气丢失,菌群也能生长,从而增强微生物的健康.
科学领域:
- 微生物学
- 系统生物学
- 遗传学
背景情况:
- 微生物种群通过对冲来适应动态环境.
- 投注对冲包括采用适合未来条件的表型,而不是当前条件.
- 这种策略在不可预测的环境中增强了微生物的生存和适应性.
研究的目的:
- 研究氧气如何影响大肠杆菌的基因表达变异性.
- 确定氧气诱导的投注对冲背后的监管机制.
- 了解调节基因表达噪声如何影响微生物健康.
主要方法:
- 在不同氧度下分析大肠杆菌中三甲基胺氧化物 (TMAO) 呼吸系统的基因表达模式.
- 使用基因操纵来研究IscR转录因子的作用.
- 量化基因表达变异和平均表达水平.
主要成果:
- 氧气诱导大肠杆菌中TMAO呼吸系统的波动表达.
- 这种波动使细胞群多样化,使注对冲成为可能.
- 转录因子IscR被确定为这种依赖氧气的表达变化的关键调节者.
- 氧会导致IscR抑制TMAO反应系统,增加随机效应和异质表达.
结论:
- 通过IscR介导的调节,氧气作为环境提示,诱导大肠杆菌的注.
- 这项研究揭示了一种调节分子噪声的机制,
- 这种适应性策略允许微生物在环境变化后持续生长,例如氧气损失.
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