Abstract
The capacitance of skeletal muscle fibers was measured by recording with one microelectrode the voltage produced by a rectangular pulse of current applied with another microelectrode. The ionic strength of the bathing solution was varied by isosmotic replacement of NaCl with sucrose, the [K] [Cl] product being held constant. The capacitance decreased with decreasing ionic strength, reaching a value of some 2 microF/cm(2) in solutions of 30 mM ionic strength, and not decreasing further in solutions of 15 mM ionic strength. The capacitance of glycerol-treated fibers did not change with ionic strength and was also some 2 microF/cm(2). It seems likely that lowering the ionic strength reduces the capacitance of the tubular system (defined as the charge stored in the tubular system), and that the 2 microF/cm(2) which is insensitive to ionic strength is associated with the surface membrane. The tubular system is open to the external solution in low ionic strength solutions since peroxidase is able to diffuse into the lumen of the tubules. Twitches and action potentials were also recorded from fibers in low ionic strength solutions, even though the capacitance of the tubular system was very small in these solutions. This finding can be explained if there is an action potential-like mechanism in the tubular membrane.
MeSH Terms
Action Potentials
Animals
Electrophysiology
Glycerol
In Vitro Techniques
Microelectrodes
Microscopy, Electron
Muscles/physiology
Osmolar Concentration
Peroxidases
Potassium Chloride
Rana pipiens
Sarcoplasmic Reticulum
Sodium Chloride
Sucrose
Chemicals
Sodium Chloride
Sucrose
Potassium Chloride
Peroxidases
Glycerol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Vaughan P C
Howell J N
Eisenberg R S
References (13)
13 references, click to expand
-
A lesion of the transverse tubules of skeletal muscle.
J Physiol. 1969 May;201(3):515-33
PMID: 5767880
-
Action potentials, afterpotentials, and excitation-contraction coupling in frog sartorius fibers without transverse tubules.
J Gen Physiol. 1969 Mar;53(3):298-310
PMID: 5767334
-
Selective disruption of the sarcotubular system in frog sartorius muscle. A quantitative study with exogenous peroxidase as a marker.
J Cell Biol. 1968 Nov;39(2):451-67
PMID: 5692585
-
Some relations between changes in the linear electrical properties of striated muscle fibers and changes in ultrastructure.
J Gen Physiol. 1967 Nov;50(10):2437-58
PMID: 6063689
-
The influence of potassium and chloride ions on the membrane potential of single muscle fibres.
J Physiol. 1959 Oct;148:127-60
PMID: 14402240
-
THE RELATION BETWEEN THE LATE AFTER-POTENTIAL AND THE SIZE OF THE TRANSVERSE TUBULAR SYSTEM OF FROG MUSCLE.
J Gen Physiol. 1964 Nov;48:235-63
PMID: 14225256
-
Swelling of the transverse tubular system in frog sartorius.
J Gen Physiol. 1969 Aug;54(2):166-77
PMID: 5796367
-
An analysis of the end-plate potential recorded with an intracellular electrode.
J Physiol. 1951 Nov 28;115(3):320-70
PMID: 14898516
-
The radial variation of potential in the transverse tubular system of skeletal muscle.
J Gen Physiol. 1971 Dec;58(6):700-1
PMID: 5120395
-
Linear electrical properties of the transverse tubules and surface membrane of skeletal muscle fibers.
J Gen Physiol. 1970 Nov;56(5):640-71
PMID: 5475999
-
The role of sodium current in the radial spread of contraction in frog muscle fibers.
J Gen Physiol. 1970 Jun;55(6):703-15
PMID: 5424374
-
A fixed charge model of the transverse tubular system of frog sartorius.
J Gen Physiol. 1969 Aug;54(2):178-87
PMID: 5796368
-
LINEAR ELECTRICAL PROPERTIES OF STRIATED MUSCLE FIBRES OBSERVED WITH INTRACELLULAR ELECTRODES.
Proc R Soc Lond B Biol Sci. 1964 Apr 14;160:69-123
PMID: 14142170