Ochsner U A, Koch A K, Fiechter A, Reiser J
Institute for Biotechnology, Swiss Federal Institute of Technology, ETH-Hönggerberg, Zürich.
J Bacteriol. 1994 Apr;176(7):2044-54. doi: 10.1128/jb.176.7.2044-2054.1994.
A mutant strain (65E12) of Pseudomonas aeruginosa that is unable to produce rhamnolipid biosurfactants and lacks rhamnosyltransferase activity was genetically complemented by using a P. aeruginosa PG201 wild-type gene library. A single complementing cosmid was isolated on the basis of surface tension measurements of subcultures of the transconjugants by using a sib selection strategy. The subcloning of the complementing cosmid clone yielded a 2-kb fragment capable of restoring rhamnolipid biosynthesis, rhamnosyltransferase activity, and utilization of hexadecane as a C source in mutant 65E12. The nucleotide sequence of the complementing 2-kb fragment was determined, and a single open reading frame (rhlR) of 723 bp specifying a putative 28-kDa protein (RhlR) was identified. Sequence homologies between the RhlR protein and some regulatory proteins such as LasR of P. aeruginosa, LuxR of Vibrio fischeri, RhiR of Rhizobium leguminosarum, and the putative activator 28-kDa UvrC of Escherichia coli suggest that the RhlR protein is a transcriptional activator. A putative target promoter which is regulated by the RhlR protein has been identified 2.5 kb upstream of the rhlR gene. Multiple plasmid-based rhlR gene copies had a stimulating effect on the growth of the P. aeruginosa wild-type strain in hexadecane-containing minimal medium, on rhamnolipid production, and on the production of pyocyanin chromophores. Disruption of the P. aeruginosa wild-type rhlR locus led to rhamnolipid-deficient mutant strains, thus confirming directly that this gene is necessary for rhamnolipid biosynthesis. Additionally, such PG201::'rhlR' mutant strains lacked elastase activity, indicating that the RhlR protein is a pleiotropic regulator.
一株不能产生鼠李糖脂生物表面活性剂且缺乏鼠李糖基转移酶活性的铜绿假单胞菌突变株(65E12),通过使用铜绿假单胞菌PG201野生型基因文库进行了基因互补。利用sib选择策略,基于转接合子亚培养物的表面张力测量,分离出了一个单一的互补黏粒。互补黏粒克隆的亚克隆产生了一个2 kb的片段,该片段能够恢复突变株65E12中的鼠李糖脂生物合成、鼠李糖基转移酶活性以及以十六烷作为碳源的利用能力。测定了互补的2 kb片段的核苷酸序列,鉴定出一个723 bp的单一开放阅读框(rhlR),其编码一种推定的28 kDa蛋白(RhlR)。RhlR蛋白与一些调节蛋白之间的序列同源性,如铜绿假单胞菌的LasR、费氏弧菌的LuxR、豌豆根瘤菌的RhiR以及大肠杆菌推定的激活剂28 kDa UvrC,表明RhlR蛋白是一种转录激活剂。在rhlR基因上游2.5 kb处鉴定出了一个受RhlR蛋白调控的推定靶启动子。多个基于质粒的rhlR基因拷贝对铜绿假单胞菌野生型菌株在含十六烷的基本培养基中的生长、鼠李糖脂产生以及绿脓菌素发色团的产生具有刺激作用。铜绿假单胞菌野生型rhlR基因座的破坏导致了鼠李糖脂缺陷型突变株,从而直接证实该基因对于鼠李糖脂生物合成是必需的。此外,这种PG201::'rhlR'突变株缺乏弹性蛋白酶活性,表明RhlR蛋白是一种多效调节因子。