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资源竞争在基因表达噪声与调控中的双刃剑作用。

Double-edged role of resource competition in gene expression noise and control.

作者信息

Goetz Hanah, Stone Austin, Zhang Rong, Lai Ying-Cheng, Tian Xiao-Jun

机构信息

School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, AZ, USA.

School of Biological and Health Systems Engineering, Arizona State University, Tempe, AZ, USA.

出版信息

Adv Genet (Hoboken). 2022 Mar;3(1). doi: 10.1002/ggn2.202100050. Epub 2022 Feb 8.

Abstract

Despite extensive investigation demonstrating that resource competition can significantly alter the deterministic behaviors of synthetic gene circuits, it remains unclear how resource competition contributes to the gene expression noise and how this noise can be controlled. Utilizing a two-gene circuit as a prototypical system, we uncover a surprising double-edged role of resource competition in gene expression noise: competition decreases noise through introducing a resource constraint but generates its own type of noise which we name as "resource competitive noise." Utilization of orthogonal resources enables retainment of the noise reduction conferred by resource constraint while removing the added resource competitive noise. The noise reduction effects are studied using three negative feedback types: negatively competitive regulation (NCR), local, and global controllers, each having four placement architectures in the protein biosynthesis pathway (mRNA or protein inhibition on transcription or translation). Our results show that both local and NCR controllers with mRNA-mediated inhibition are efficacious at reducing noise, with NCR controllers demonstrating a superior noise-reduction capability. We also find that combining feedback controllers with orthogonal resources can improve the local controllers. This work provides deep insights into the origin of stochasticity in gene circuits with resource competition and guidance for developing effective noise control strategies.

摘要

尽管大量研究表明资源竞争能够显著改变合成基因回路的确定性行为,但资源竞争如何影响基因表达噪声以及如何控制这种噪声仍不清楚。我们以双基因回路作为典型系统,发现资源竞争在基因表达噪声中具有惊人的双刃剑作用:竞争通过引入资源限制降低噪声,但同时产生了我们称为“资源竞争噪声”的自身类型的噪声。利用正交资源能够在消除额外的资源竞争噪声的同时,保留资源限制带来的噪声降低效果。我们使用三种负反馈类型研究了噪声降低效果:负竞争调节(NCR)、局部和全局控制器,每种在蛋白质生物合成途径中都有四种放置架构(mRNA或蛋白质对转录或翻译的抑制)。我们的结果表明,具有mRNA介导抑制的局部和NCR控制器在降低噪声方面均有效,其中NCR控制器表现出卓越的降噪能力。我们还发现,将反馈控制器与正交资源相结合可以改进局部控制器。这项工作为深入了解具有资源竞争的基因回路中随机性的起源提供了深刻见解,并为制定有效的噪声控制策略提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a746/9744497/7d272a37a78a/GGN2-3-2100050-g001.jpg

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