LOEWE Center for Synthetic Microbiology, Department of Biology, Philipps-University Marburg, 35032 Marburg, Germany.
LOEWE Center for Synthetic Microbiology, Department of Biology, Philipps-University Marburg, 35032 Marburg, Germany
Proc Natl Acad Sci U S A. 2014 Jul 22;111(29):10702-7. doi: 10.1073/pnas.1404929111. Epub 2014 Jul 7.
Quorum sensing (QS) using N-acyl homoserine lactones (AHLs) as signal molecules is a common strategy used by diverse Gram-negative bacteria. A widespread mechanism of AHL sensing involves binding of these molecules by cytosolic LuxR-type transcriptional regulators, which requires uptake of external AHLs. The outer membrane is supposed to be an efficient barrier for diffusion of long-chain AHLs. Here we report evidence that in Sinorhizobium meliloti, sensing of AHLs with acyl chains composed of 14 or more carbons is facilitated by the outer membrane protein FadLSm, a homolog of the Escherichia coli FadLEc long-chain fatty acid transporter. The effect of fadLSm on AHL sensing was more prominent for longer and more hydrophobic signal molecules. Using reporter gene fusions to QS target genes, we found that fadLSm increased AHL sensitivity and accelerated the course of QS. In contrast to FadLEc, FadLSm did not support uptake of oleic acid, but did contribute to growth on palmitoleic acid. FadLSm homologs from related symbiotic α-rhizobia and the plant pathogen Agrobacterium tumefaciens differed in their ability to facilitate long-chain AHL sensing or to support growth on oleic acid. FadLAt was found to be ineffective toward long-chain AHLs. We obtained evidence that the predicted extracellular loop 5 of FadLSm and further α-rhizobial FadL proteins contains determinants of specificity to long-chain AHLs. Replacement of a part of loop 5 by the corresponding region from α-rhizobial FadL proteins transferred sensitivity for long-chain AHLs to FadLAt.
群体感应(QS)使用 N-酰基高丝氨酸内酯(AHLs)作为信号分子是多种革兰氏阴性细菌普遍采用的策略。AHL 感应的一种广泛机制涉及这些分子与胞质型 LuxR 型转录调节剂的结合,这需要摄取外部 AHLs。外膜被认为是扩散长链 AHLs 的有效屏障。在这里,我们报告了证据表明,在根瘤菌属 meliloti 中,由 14 个或更多碳原子组成的酰基链的 AHL 感应是由外膜蛋白 FadLSm 促进的,FadLSm 是大肠杆菌 FadLEc 长链脂肪酸转运蛋白的同源物。fadLSm 对 AHL 感应的影响在更长和更疏水的信号分子中更为明显。使用报告基因融合到 QS 靶基因,我们发现 fadLSm 增加了 AHL 敏感性并加速了 QS 的进程。与 FadLEc 不同,FadLSm 不支持油酸的摄取,但有助于棕榈油酸的生长。来自相关共生α-根瘤菌和植物病原体根癌农杆菌的 FadLSm 同源物在促进长链 AHL 感应或支持油酸生长的能力上有所不同。发现 FadLAt 对长链 AHLs 无效。我们获得的证据表明,FadLSm 的预测细胞外环 5 和进一步的α-根瘤菌 FadL 蛋白包含对长链 AHLs 的特异性决定因素。通过将环 5 的一部分替换为α-根瘤菌 FadL 蛋白的相应区域,将 FadLAt 对长链 AHLs 的敏感性转移。