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首页> 外文期刊>MBio >Positive Autoregulation of an Acyl-Homoserine Lactone Quorum-Sensing Circuit Synchronizes the Population Response
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Positive Autoregulation of an Acyl-Homoserine Lactone Quorum-Sensing Circuit Synchronizes the Population Response

机译:酰基-高丝氨酸内酯法定人数感应电路的正自动调节同步人口反应。

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ABSTRACT Many proteobacteria utilize acyl-homoserine lactone quorum-sensing signals. At low population densities, cells produce a basal level of signal, and when sufficient signal has accumulated in the surrounding environment, it binds to its receptor, and quorum-sensing-dependent genes can be activated. A common characteristic of acyl-homoserine lactone quorum sensing is that signal production is positively autoregulated. We have examined the role of positive signal autoregulation in Pseudomonas aeruginosa . We compared population responses and individual cell responses in populations of wild-type P.?aeruginosa to responses in a strain with the signal synthase gene controlled by an arabinose-inducible promoter so that signal was produced at a constant rate per cell regardless of cell population density. At a population level, responses of the wild type and the engineered strain were indistinguishable, but the responses of individual cells in a population of the wild type showed greater synchrony than the responses of the engineered strain. Although sufficient signal is required to activate expression of quorum-sensing-regulated genes, it is not sufficient for activation of certain genes, the late genes, and their expression is delayed until other conditions are met. We found that late gene responses were reduced in the engineered strain. We conclude that positive signal autoregulation is not a required element in acyl-homoserine lactone quorum sensing, but it functions to enhance synchrony of the responses of individuals in a population. Synchrony might be advantageous in some situations, whereas a less coordinated quorum-sensing response might allow bet hedging and be advantageous in other situations. IMPORTANCE There are many quorum-sensing systems that involve a transcriptional activator, which responds to an acyl-homoserine lactone signal. In all of the examples studied, the gene coding for signal production is positively autoregulated by the signal, and it has even been described as essential for a quorum-sensing response. We have used the opportunistic pathogen Pseudomonas aeruginosa as a model to show that positive autoregulation is not required for a robust quorum-sensing response. We also show that positive autoregulation of signal production enhances the synchrony of the response. This information enhances our general understanding of the biological significance of how acyl-homoserine lactone quorum-sensing circuits are arranged.
机译:摘要许多变形杆菌都利用酰基高丝氨酸内酯的群体感应信号。在低种群密度下,细胞会产生基本水平的信号,当周围环境中积累了足够的信号时,细胞会与其受体结合,从而可以激活群体感应相关基因。酰基高丝氨酸内酯群体感应的一个共同特征是信号产生正向自动调节。我们已经研究了铜绿假单胞菌阳性信号自动调节的作用。我们比较了野生型铜绿假单胞菌种群中的种群反应和个体细胞反应,以及由阿拉伯糖诱导型启动子控制的具有信号合酶基因的菌株的反应,从而无论细胞数量如何,每个细胞均以恒定的速率产生信号密度。在种群水平上,野生型和工程菌株的应答是无法区分的,但是野生型种群中单个细胞的应答显示出比工程菌株的应答更大的同步性。尽管需要足够的信号来激活群体感应调节基因的表达,但对于某些基因,晚期基因的激活还是不够的,并且它们的表达要等到满足其他条件时才被延迟。我们发现在工程菌株中晚期基因反应减少了。我们得出结论,在酰基高丝氨酸内酯群体感应中,正信号自动调节不是必需的元素,但是它的作用是增强人群中个体响应的同步性。同步在某些情况下可能是有利的,而较少协调的群体感应响应可能允许对冲,而在其他情况下则是有利的。重要说明:许多群体感应系统都涉及转录激活因子,该激活因子对酰基高丝氨酸内酯信号作出响应。在所有研究的实例中,编码信号产生的基因均由信号正向自动调节,甚至被描述为群体感应反应所必需。我们已经使用机会性病原体铜绿假单胞菌作为模型来表明积极的自动调节对于鲁棒的群体感应反应并不需要。我们还表明,信号产生的正向自动调节可增强响应的同步性。该信息增强了我们对酰基-高丝氨酸内酯群体感应电路排列方式生物学意义的一般理解。

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