Abstract
The protein motive force of metabolizing Bacillus subtilis cells was only slightly affected by changes in the external pH between 5 and 8, although the electrical component and the chemical component of the proton motive force contributed differently at different external pH. The electrical component of the proton motive force was very small at pH 5, and the chemical component was almost negligible at pH 7.5. At external pH values between 6 and 7.7, swimming speed of the cells stayed constant. Thus, either the electrical component or the chemical component of the proton motive force could drive the flagellar motor. When the proton motive force of valinomycin-treated cells was quantitatively decreased by increasing the external K+ concentration, the swimming speed of the cells changed in a unique way: the swimming speed was not affected until about--100 mV, then decreased linearly with further decrease in the proton motive force, and was almost zero at about--30 mV. The rotation rate of a flagellum, measured by a tethered cell, showed essentially the same characteristics. Thus, there are a threshold proton motive force and a saturating proton motive force for the rotation of the B. subtilis flagellar motor.
MeSH Terms
Bacillus subtilis/physiology,ultrastructure
Flagella/physiology
Hydrogen-Ion Concentration
Membrane Potentials
Movement
Potassium/pharmacology
Protons
Valinomycin/pharmacology
Chemicals
Protons
Valinomycin
Potassium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Shioi J I
Matsuura S
Imae Y
References (26)
26 references, click to expand
-
Fine structure and isolation of the hook-basal body complex of flagella from Escherichia coli and Bacillus subtilis.
J Bacteriol. 1971 Jan;105(1):384-95
PMID: 4993325
-
Field fluctuation in ionic solutions and its biological significance.
J Theor Biol. 1973 May;39(2):373-86
PMID: 4728724
-
Flagellar rotation and the mechanism of bacterial motility.
Nature. 1974 May 3;249(452):73-4
PMID: 4598030
-
Bacterial behaviour.
Nature. 1975 Apr 3;254(5499):389-92
PMID: 1090851
-
The helical filaments of the thin flagella that propel bacteria do not wave or beat but instead rotate rigidly like propellers! And they are driven by a reversible rotary motor at their base.
Sci Am. 1975 Aug;233(2):36-44
PMID: 1145173
-
Chemotactic repellents of Bacillus subtilis.
J Mol Biol. 1976 Jan 5;100(1):103-8
PMID: 814244
-
Change in membrane potential during bacterial chemotaxis.
Proc Natl Acad Sci U S A. 1976 Dec;73(12):4387-91
PMID: 794876
-
Bacterial flagella rotating in bundles: a study in helical geometry.
Proc Natl Acad Sci U S A. 1977 Jan;74(1):221-5
PMID: 264676
-
Apparatus for detecting rate and direction of rotation of tethered bacterial cells.
Rev Sci Instrum. 1977 Apr;48(4):407-10
PMID: 322250
-
Ion transport and rotation of bacterial flagella.
Nature. 1977 Jul 28;268(5618):360-2
PMID: 887168
-
A protonmotive force drives bacterial flagella.
Proc Natl Acad Sci U S A. 1977 Jul;74(7):3060-4
PMID: 19741
-
Vectorial chemiosmotic processes.
Annu Rev Biochem. 1977;46:996-1005
PMID: 20043
-
Motility in Bacillus subtilis driven by an artificial protonmotive force.
FEBS Lett. 1977 Oct 15;82(2):187-90
PMID: 410660
-
An ecf mutation in Escherichia coli pleiotropically affecting energy coupling in active transport but not generation or maintenance of membrane potential.
J Biol Chem. 1977 Dec 10;252(23):8582-8
PMID: 21876
-
Sensory electrophysiology of bacteria: relationship of the membrane potential to motility and chemotaxis in Bacillus subtilis.
Proc Natl Acad Sci U S A. 1977 Nov;74(11):4752-6
PMID: 412194
-
Genetics of structure and function of bacterial flagella.
Annu Rev Genet. 1977;11:161-82
PMID: 339815
-
The proton pump is a molecular engine of motile bacteria.
Nature. 1978 Mar 16;272(5650):280-2
PMID: 24186
-
Protonmotive force and motility of Bacillus subtilis.
J Bacteriol. 1978 Mar;133(3):1083-8
PMID: 25261
-
Coupling between H+ entry and ATP formation in Escherichia coli.
Biochem Biophys Res Commun. 1978 Aug 29;83(4):1496-501
PMID: 29634
-
Reconstitution of the energy transformer, gate and channel subunit reassembly, crystalline ATPase and ATP synthesis.
Biochim Biophys Acta. 1978 Sep 21;505(1):45-93
PMID: 30482
-
The measurement of membrane potential and deltapH in cells, organelles, and vesicles.
Methods Enzymol. 1979;55:547-69
PMID: 37402
-
Characterization of the Bacillus subtilis motile system driven by an artificially created proton motive force.
J Bacteriol. 1979 Oct;140(1):28-36
PMID: 40954
-
Protonmotive force and bacterial sensing.
J Bacteriol. 1980 Jan;141(1):26-32
PMID: 6766440
-
Energetics of flagellar rotation in bacteria.
J Mol Biol. 1980 Apr 15;138(3):541-61
PMID: 7411617
-
Proton chemical potential, proton electrical potential and bacterial motility.
J Mol Biol. 1980 Apr 15;138(3):599-614
PMID: 6774100
-
Coupling of phosphorylation to electron and hydrogen transfer by a chemi-osmotic type of mechanism.
Nature. 1961 Jul 8;191:144-8
PMID: 13771349