首页> 外文期刊>PLoS Computational Biology >Noise suppression in stochastic genetic circuits using PID controllers
【24h】

Noise suppression in stochastic genetic circuits using PID controllers

机译:使用PID控制器随机遗传电路中的噪声抑制

获取原文
           

摘要

Inside individual cells, protein population counts are subject to molecular noise due to low copy numbers and the inherent probabilistic nature of biochemical processes. We investigate the effectiveness of proportional, integral and derivative (PID) based feedback controllers to suppress protein count fluctuations originating from two noise sources: bursty expression of the protein, and external disturbance in protein synthesis. Designs of biochemical reactions that function as PID controllers are discussed, with particular focus on individual controllers separately, and the corresponding closed-loop system is analyzed for stochastic controller realizations. Our results show that proportional controllers are effective in buffering protein copy number fluctuations from both noise sources, but this noise suppression comes at the cost of reduced static sensitivity of the output to the input signal. In contrast, integral feedback has no effect on the protein noise level from stochastic expression, but significantly minimizes the impact of external disturbances, particularly when the disturbance comes at low frequencies. Counter-intuitively, integral feedback is found to amplify external disturbances at intermediate frequencies. Next, we discuss the design of a coupled feedforward-feedback biochemical circuit that approximately functions as a derivate controller. Analysis using both analytical methods and Monte Carlo simulations reveals that this derivative controller effectively buffers output fluctuations from bursty stochastic expression, while maintaining the static input-output sensitivity of the open-loop system. In summary, this study provides a systematic stochastic analysis of biochemical controllers, and paves the way for their synthetic design and implementation to minimize deleterious fluctuations in gene product levels.
机译:在单个细胞内,由于低拷贝数以及生化过程的固有概率性质,蛋白质群计数受到分子噪声的影响。我们研究了比例,积分和衍生物(PID)反馈控制器的有效性,以抑制来自两个噪声源的蛋白质计数波动:蛋白质的爆发表达,以及蛋白质合成中的外部干扰。讨论了作为PID控制器的生化反应的设计,特别侧重于各个控制器,并分析了对应的闭环系统,用于随机控制器实现。我们的结果表明,比例控制器在噪声源的缓冲蛋白质拷贝数波动中有效,但这种噪声抑制以降低输出到输入信号的静电灵敏度降低的成本。相比之下,积分反馈对来自随机表达的蛋白质噪声水平没有影响,但显着最大限度地减少了外部干扰的影响,特别是当干扰处于低频时。反直观地,发现积分反馈在中间频率下放大外部干扰。接下来,我们讨论耦合的馈电反馈生物化学电路的设计,其近似用作衍生控制器。使用分析方法和蒙特卡罗模拟的分析表明,该衍生控制器有效地缓冲了来自突发随机表达式的输出波动,同时保持开环系统的静态输入 - 输出灵敏度。总之,本研究提供了生物化学控制器的系统随机分析,为其合成设计和实施铺平了道路,以最大限度地减少基因产物水平的有害波动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号