Fuqua C, Winans S C, Greenberg E P
Department of Biology, Trinity University, San Antonio, Texas 78212, USA.
Annu Rev Microbiol. 1996;50:727-51. doi: 10.1146/annurev.micro.50.1.727.
The importance of accurate demographic information is reflected in the United States Constitution, Article 1, which provides for a decennial census of this country's human population. Bacteria also conduct a census of their population and do so more frequently, more efficiently, and as far we know, with little if any of the political contentiousness caused by human demographers. Many examples have been found of particular bacterial genes, operons, or regulons that are expressed preferentially at high cell densities. Many of these are regulated by proteins related to the LuxR and LuxI proteins of Vibrio fischeri, and by a diffusible pheromone called an autoinducer. LuxR and LuxI and their cognate autoinducer (3-oxohexanoyl homoserine lactone, designated VAI-1) provide an important model to describe the functions of this family of proteins. LuxR is a VAI-1 receptor and a VAI-1-dependent transcriptional activator, and LuxI directs the synthesis of VAI-1. VAI-1 diffuses across the bacterial envelope, and intracellular concentrations of it are therefore strongly increased by nearby VAI-1-producing bacteria. Similar systems regulate pathogenesis factors in Pseudomonas aeruginosa and Erwinia spp., as well as T1 plasmid conjugal transfer in Agrobacterium tumefaciens, and many other genes in numerous genera of gram-negative bacteria. Genetic analyses of these systems have revealed a high degree of functional conservation, while also uncovering features that are unique to each.
准确的人口统计信息的重要性在美国宪法第一条中得到体现,该条规定对本国人口进行十年一次的普查。细菌也会对其种群进行普查,而且普查更为频繁、高效,据我们所知,几乎不存在人类人口统计学家所引发的那种政治争议。已发现许多特定细菌基因、操纵子或调控子在高细胞密度下优先表达的例子。其中许多是由与费氏弧菌的LuxR和LuxI蛋白相关的蛋白质以及一种名为自诱导物的可扩散信息素调控的。LuxR和LuxI及其同源自诱导物(3-氧代己酰高丝氨酸内酯,命名为VAI-1)为描述这一蛋白质家族的功能提供了一个重要模型。LuxR是一种VAI-1受体和VAI-1依赖性转录激活因子,而LuxI指导VAI-1的合成。VAI-1扩散穿过细菌包膜,因此其细胞内浓度会因附近产生VAI-1的细菌而大幅增加。类似的系统调控铜绿假单胞菌和欧文氏菌属中的致病因子,以及根癌土壤杆菌中的T1质粒接合转移,还有许多革兰氏阴性菌属中的其他许多基因。对这些系统的遗传学分析揭示了高度的功能保守性,同时也发现了每个系统独特的特征。