TY - JOUR
T1 - Two flagellar stators and their roles in motility and virulence in Pseudomonas syringae pv. tabaci 6605
AU - Kanda, Eiko
AU - Tatsuta, Takafumi
AU - Suzuki, Tomoko
AU - Taguchi, Fumiko
AU - Naito, Kana
AU - Inagaki, Yoshishige
AU - Toyoda, Kazuhiro
AU - Shiraishi, Tomonori
AU - Ichinose, Yuki
N1 - Funding Information:
Acknowledgments We thank the Leaf Tobacco Research Laboratory of Japan Tobacco Inc. for providing Pta 6605. We are also grateful to Dr. P. Williams (Nottingham University, UK) and Dr. T. Ikeda (Utsunomiya University, Japan) for providing Chromo-bacterium violaceum CV026 and the chemically synthesized AHLs, respectively. This work was supported in part by the Program for Promotion of Basic Research Activities for Innovative Bioscience (PROBRAIN).
Copyright:
Copyright 2011 Elsevier B.V., All rights reserved.
PY - 2011/2
Y1 - 2011/2
N2 - The motor proteins around the flagellar basal body consist of two cytoplasmic membrane proteins, MotA and MotB, and function as a complex that acts as the stator to generate the torque that drives rotation. Genome analysis of several Pseudomonas syringae pathovars revealed that there are two sets of genes encoding motor proteins: motAB and motCD. Deduced amino acid sequences for MotA/B and MotC/D showed homologies to the H+-driven stator from Escherichia coli and Na+-driven stator from Vibrio alginolyticus, respectively. However, the swimming motility of P. syringae pv. tabaci (Pta) 6605 was inhibited by the protonophore carbonyl cyanide m-chlorophenylhydrazone but not by the sodium stator-specific inhibitor phenamil. To identify a gene encoding the stator protein required for motility, motAB, motCD, and motABCD mutants were generated. The motCD mutant had remarkably reduced and the motABCD mutant completely abolished swimming motilities, whereas the motAB mutant retained some degree of these abilities. The motCD and motABCD mutants did not produce N-acyl-homoserine lactones (AHLs), quorum-sensing molecules in this pathogen, and remarkably reduced the ability to cause disease in host tobacco leaves, as we previously observed in the fliC mutant strain. These results strongly indicate that both stator pairs in Pta 6605 are proton-dependent and that MotCD is important for not only flagellar motility but also for production of AHLs and the ability to cause disease in host plants.
AB - The motor proteins around the flagellar basal body consist of two cytoplasmic membrane proteins, MotA and MotB, and function as a complex that acts as the stator to generate the torque that drives rotation. Genome analysis of several Pseudomonas syringae pathovars revealed that there are two sets of genes encoding motor proteins: motAB and motCD. Deduced amino acid sequences for MotA/B and MotC/D showed homologies to the H+-driven stator from Escherichia coli and Na+-driven stator from Vibrio alginolyticus, respectively. However, the swimming motility of P. syringae pv. tabaci (Pta) 6605 was inhibited by the protonophore carbonyl cyanide m-chlorophenylhydrazone but not by the sodium stator-specific inhibitor phenamil. To identify a gene encoding the stator protein required for motility, motAB, motCD, and motABCD mutants were generated. The motCD mutant had remarkably reduced and the motABCD mutant completely abolished swimming motilities, whereas the motAB mutant retained some degree of these abilities. The motCD and motABCD mutants did not produce N-acyl-homoserine lactones (AHLs), quorum-sensing molecules in this pathogen, and remarkably reduced the ability to cause disease in host tobacco leaves, as we previously observed in the fliC mutant strain. These results strongly indicate that both stator pairs in Pta 6605 are proton-dependent and that MotCD is important for not only flagellar motility but also for production of AHLs and the ability to cause disease in host plants.
KW - Flagellar stator
KW - Motility
KW - N-acyl-homoserine lactone
KW - Quorum sensing
KW - Virulence
UR - https://www.scopus.com/pages/publications/79551600623
UR - https://www.scopus.com/pages/publications/79551600623#tab=citedBy
U2 - 10.1007/s00438-010-0594-8
DO - 10.1007/s00438-010-0594-8
M3 - Article
C2 - 21165649
AN - SCOPUS:79551600623
SN - 1617-4615
VL - 285
SP - 163
EP - 174
JO - Molecular Genetics and Genomics
JF - Molecular Genetics and Genomics
IS - 2
ER -