MISC

2016年

Genetic analysis of revertants isolated from the rod-fragile fliF mutant of Salmonella

Biophysics and Physicobiology
  • Komatsu Hitomi
  • ,
  • Hayashi Fumio
  • ,
  • Sasa Masahiro
  • ,
  • Shikata Koji
  • ,
  • Yamaguchi Shigeru
  • ,
  • Namba Keiichi
  • ,
  • Oosawa Kenji

13
開始ページ
13
終了ページ
25
記述言語
英語
掲載種別
DOI
10.2142/biophysico.13.0_13
出版者・発行元
一般社団法人 日本生物物理学会

FliF is the protein comprising the MS-ring of the bacterial flagellar basal body, which is the base for the assembly of flagellar axial structures. From a fliF mutant that easily releases the rod-hook-filament in viscous environments, more than 400 revertants that recovered their swarming ability in viscous conditions, were isolated. The second-site mutations were determined for approximately 70% of them. There were three regions where the mutations were localized: two in Region I, 112 in Region II, and 71 in Region III including the true reversion. In Region I, second-site mutations were found in FlgC and FlgF of the proximal rod, suggesting that they affect the interaction between the MS-ring and the rod. In Region II, there were 69 and 42 mutations in MotA and MotB, respectively, suggesting that the second-site mutations in MotA and MotB may decrease the rotational speed of the flagellar motor to reduce the probability of releasing the rod under this condition. One exception is a mutation in FlhC that caused a down regulation of the flagellar proteins production but it may directly affect transcription or translation of motA and motB. In Region III, there were 44, 24, and 3 mutations in FliG, FliM, and FliF, respectively. There were no second-site mutations identified in FliN although it is involved in torque generation as a component of the C-ring. Many of the mutations were involved in the motor rotation, and it is suggested that such reduced speeds result in stabilizing the filament attachment to the motor.

リンク情報
DOI
https://doi.org/10.2142/biophysico.13.0_13
CiNii Articles
http://ci.nii.ac.jp/naid/130005123830
URL
https://jlc.jst.go.jp/DN/JLC/20019952992?from=CiNii
ID情報
  • DOI : 10.2142/biophysico.13.0_13
  • ISSN : 2189-4779
  • CiNii Articles ID : 130005123830

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