Department of Microbiology, University of Washington, Seattle, WA 98195, USA.
Proc Natl Acad Sci U S A. 2011 Apr 26;108(17):7183-8. doi: 10.1073/pnas.1103821108. Epub 2011 Apr 6.
Many Proteobacteria possess LuxI-LuxR-type quorum-sensing systems that produce and detect fatty acyl-homoserine lactone (HSL) signals. The photoheterotroph Rhodopseudomonas palustris is unusual in that it produces and detects an aryl-HSL, p-coumaroyl-HSL, and signal production requires an exogenous source of p-coumarate. A photosynthetic stem-nodulating member of the genus Bradyrhizobium produces a small molecule signal that elicits an R. palustris quorum-sensing response. Here, we show that this signal is cinnamoyl-HSL and that cinnamoyl-HSL is produced by the LuxI homolog BraI and detected by BraR. Cinnamoyl-HSL reaches concentrations on the order of 50 nM in cultures of stem-nodulating bradyrhizobia grown in the presence or absence of cinnamate. Acyl-HSLs often reach concentrations of 0.1-30 μM in bacterial cultures, and generally, LuxR-type receptors respond to signals in a concentration range from 5 to a few hundred nanomolar. Our stem-nodulating Bradyrhizobium strain responds to picomolar concentrations of cinnamoyl-HSL and thus, produces cinnamoyl-HSL in excess of the levels required for a signal response without an exogenous source of cinnamate. The ability of Bradyrhizobium to produce and respond to cinnamoyl-HSL shows that aryl-HSL production is not unique to R. palustris, that the aromatic acid substrate for aryl-HSL synthesis does not have to be supplied exogenously, and that some acyl-HSL quorum-sensing systems may function at very low signal production and response levels.
许多变形菌门拥有 LuxI-LuxR 型群体感应系统,该系统可产生并检测脂肪酸酰基高丝氨酸内酯 (HSL) 信号。光异养菌沼泽红假单胞菌的不同寻常之处在于它产生并检测到芳基-HSL、对香豆酰-HSL,并且信号的产生需要外源对香豆酸。根瘤菌属的一个光合茎瘤成员产生一种小分子信号,可引发沼泽红假单胞菌的群体感应反应。在这里,我们表明该信号是肉桂酰-HSL,并且肉桂酰-HSL 是由 LuxI 同源物 BraI 产生并由 BraR 检测的。在有或没有肉桂酸存在的情况下,茎瘤型根瘤菌生长的培养物中,肉桂酰-HSL 的浓度可达 50 nM 左右。酰基-HSL 通常在细菌培养物中的浓度达到 0.1-30 μM,通常,LuxR 型受体对信号的响应浓度范围为 5 到几百纳摩尔。我们的茎瘤型根瘤菌菌株对 picomolar 浓度的肉桂酰-HSL 有反应,因此,在没有外源肉桂酸的情况下,产生的肉桂酰-HSL 超过信号响应所需的水平。根瘤菌产生和响应肉桂酰-HSL 的能力表明,芳基-HSL 的产生并非沼泽红假单胞菌所特有,芳基-HSL 合成的芳香酸底物不必外源提供,并且一些酰基-HSL 群体感应系统可能在非常低的信号产生和响应水平下发挥作用。