MISC

国際誌
2020年4月1日

Characterization of PomA periplasmic loop and sodium ion entering in stator complex of sodium-driven flagellar motor.

Journal of biochemistry
  • Tatsuro Nishikino
  • ,
  • Hiroto Iwatsuki
  • ,
  • Taira Mino
  • ,
  • Seiji Kojima
  • ,
  • Michio Homma

167
4
開始ページ
389
終了ページ
398
記述言語
英語
掲載種別
DOI
10.1093/jb/mvz102

The bacterial flagellar motor is a rotary nanomachine driven by ion flow. The flagellar stator complex, which is composed of two proteins, PomA and PomB, performs energy transduction in marine Vibrio. PomA is a four transmembrane (TM) protein and the cytoplasmic region between TM2 and TM3 (loop2-3) interacts with the rotor protein FliG to generate torque. The periplasmic regions between TM1 and TM2 (loop1-2) and TM3 and TM4 (loop3-4) are candidates to be at the entrance to the transmembrane ion channel of the stator. In this study, we purified the stator complex with cysteine replacements in the periplasmic loops and assessed the reactivity of the protein with biotin maleimide (BM). BM easily modified Cys residues in loop3-4 but hardly labelled Cys residues in loop1-2. We could not purify the plug deletion stator (ΔL stator) composed of PomBΔ41-120 and WT-PomA but could do the ΔL stator with PomA-D31C of loop1-2 or with PomB-D24N of TM. When the ion channel is closed, PomA and PomB interact strongly. When the ion channel opens, PomA interacts less tightly with PomB. The plug and loop1-2 region regulate this activation of the stator, which depends on the binding of sodium ion to the D24 residue of PomB.

リンク情報
DOI
https://doi.org/10.1093/jb/mvz102
PubMed
https://www.ncbi.nlm.nih.gov/pubmed/31738405
ID情報
  • DOI : 10.1093/jb/mvz102
  • PubMed ID : 31738405

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