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乳糖操纵子诱导和双峰现象的动力学方法。

Kinetic approaches to lactose operon induction and bimodality.

机构信息

Universite de Rennes1-IRSET, Campus de Beaulieu Bat. 13, 35042 Rennes Cedex, France.

出版信息

J Theor Biol. 2013 May 21;325:62-75. doi: 10.1016/j.jtbi.2013.02.005. Epub 2013 Feb 26.

DOI:10.1016/j.jtbi.2013.02.005
PMID:23454080
Abstract

The quasi-equilibrium approximation is acceptable when molecular interactions are fast enough compared to circuit dynamics, but is no longer allowed when cellular activities are governed by rare events. A typical example is the lactose operon (lac), one of the most famous paradigms of transcription regulation, for which several theories still coexist to describe its behaviors. The lac system is generally analyzed by using equilibrium constants, contradicting single-event hypotheses long suggested by Novick and Weiner (1957). Enzyme induction as an all-or-none phenomenon. Proc. Natl. Acad. Sci. USA 43, 553-566) and recently refined in the study of (Choi et al., 2008. A stochastic single-molecule event triggers phenotype switching of a bacterial cell. Science 322, 442-446). In the present report, a lac repressor (LacI)-mediated DNA immunoprecipitation experiment reveals that the natural LacI-lac DNA complex built in vivo is extremely tight and long-lived compared to the time scale of lac expression dynamics, which could functionally disconnect the abortive expression bursts and forbid using the standard modes of lac bistability. As alternatives, purely kinetic mechanisms are examined for their capacity to restrict induction through: (i) widely scattered derepression related to the arrival time variance of a predominantly backward asymmetric random walk and (ii) an induction threshold arising in a single window of derepression without recourse to nonlinear multimeric binding and Hill functions. Considering the complete disengagement of the lac repressor from the lac promoter as the probabilistic consequence of a transient stepwise mechanism, is sufficient to explain the sigmoidal lac responses as functions of time and of inducer concentration. This sigmoidal shape can be misleadingly interpreted as a phenomenon of equilibrium cooperativity classically used to explain bistability, but which has been reported to be weak in this system.

摘要

准平衡近似在分子相互作用相对于电路动态足够快的情况下是可以接受的,但当细胞活动受到稀有事件的控制时,它就不再适用了。乳糖操纵子(lac)就是一个典型的例子,它是转录调控最著名的范例之一,有几种理论仍然共存来描述它的行为。lac 系统通常使用平衡常数进行分析,这与 Novick 和 Weiner(1957 年)提出的单一事件假设相矛盾。酶的诱导是一种全有或全无的现象。Proc. Natl. Acad. Sci. USA 43, 553-566),最近在(Choi 等人的研究中得到了改进,2008. 一个随机的单分子事件触发了细菌细胞的表型转换。Science 322, 442-446)。在本报告中,lac 阻遏物(LacI)介导的 DNA 免疫沉淀实验表明,与 lac 表达动力学的时间尺度相比,体内构建的天然 LacI-lac DNA 复合物非常紧密且寿命长,这可能在功能上阻断了夭折的表达爆发,并禁止使用 lac 双稳态的标准模式。作为替代方案,纯粹的动力学机制被检查其限制诱导的能力:(i)与主要向后不对称随机游动到达时间方差相关的广泛分散去阻遏,以及(ii)在去阻遏的单个窗口中出现的诱导阈值,而无需诉诸非线性多聚体结合和 Hill 函数。考虑到 lac 阻遏物从 lac 启动子的完全脱离是瞬态逐步机制的概率后果,足以解释作为时间和诱导剂浓度函数的 lac 响应的 S 形。这种 S 形形状可能会被误解为经典用于解释双稳态的平衡协同作用现象,但据报道,在这个系统中它很弱。

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