Lee Kyoung, Ha Gwang Su, Veeranagouda Yaligara, Seo Young-Su, Hwang Ingyu
Department of Bio Health Science, Changwon National University, Changwon-si, Kyongnam 51140, Republic of Korea.
Department of Microbiology, Pusan National University, Busan 46241, Republic of Korea.
Microbiology (Reading). 2016 Nov;162(11):1945-1954. doi: 10.1099/mic.0.000373. Epub 2016 Sep 15.
Pseudomonas alkylphenolica is an important strain in the biodegradation of toxic alkylphenols and mass production of bioactive polymannuronate polymers. This strain forms a diverse, 3D biofilm architecture, including mushroom-like aerial structures, circular pellicles and surface spreading, depending on culture conditions. A mutagenesis and complementation study showed that a predicted transmembrane kinase, PSAKL28_21690 (1164 aa), harbouring a periplasmic CHASE3 domain flanked by two transmembrane helices in addition to its cytoplasmic GAF, histidine kinase and three CheY-like response regulator domains, plays a positive role in the formation of the special biofilm architecture and a negative role in swimming activity. In addition, the gene, named here as bmsA, is co-transcribed with three genes encoding proteins with CheR (PSAKL28_21700) and CheB (PSAKL28_21710) domains and response regulator and histidine kinase domains (PSAKL28_21720). This gene cluster is thus named bmsABCD and is found widely distributed in pseudomonads and other bacteria. Deletion of the genes in the cluster, except forbmsA, did not result in changes in biofilm-related phenotypes. The RNA-seq analysis showed that the expression of genes coding for flagellar synthesis was increased when bmsA was mutated. In addition, the expression of rsmZ, which is one of final targets of the Gac regulon, was not significantly altered in the bmsA mutant, and overexpression of bmsA in the gacA mutant did not produce the WT phenotype. These results indicate that the sensory Bms regulon does not affect the upper cascade of the Gac signal transduction pathway for the biofilm-related phenotypes in P. alkylphenolica.
烷基酚假单胞菌是有毒烷基酚生物降解和生物活性聚甘露糖醛酸聚合物大规模生产中的一种重要菌株。根据培养条件,该菌株形成多样的三维生物膜结构,包括蘑菇状气生结构、圆形菌膜和表面扩散。一项诱变和互补研究表明,一个预测的跨膜激酶PSAKL28_21690(1164个氨基酸),除了其胞质GAF、组氨酸激酶和三个CheY样应答调节结构域外,还具有一个位于周质的CHASE3结构域,两侧各有一个跨膜螺旋,在特殊生物膜结构的形成中起积极作用,而在游动活性中起消极作用。此外,该基因(此处命名为bmsA)与三个编码具有CheR(PSAKL28_21700)和CheB(PSAKL28_21710)结构域以及应答调节和组氨酸激酶结构域(PSAKL28_21720)的蛋白质的基因共转录。因此,这个基因簇被命名为bmsABCD,并且发现它广泛分布于假单胞菌属和其他细菌中。该簇中除bmsA外的基因缺失并未导致生物膜相关表型的改变。RNA测序分析表明,当bmsA发生突变时,编码鞭毛合成的基因表达增加。此外,作为Gac调控子最终靶点之一的rsmZ在bmsA突变体中的表达没有显著改变,并且在gacA突变体中过表达bmsA也没有产生野生型表型。这些结果表明,感觉Bms调控子不会影响烷基酚假单胞菌中与生物膜相关表型的Gac信号转导途径的上游级联反应。