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September 1, 1964The Journal of General Physiology330 citationsOpen Access

The Initiation of Spike Potential in Barnacle Muscle Fibers under Low Intracellular Ca++

SHSusumu HagiwaraKNKén-Ichi Naka

Key Points

  • The research aims to understand how low intracellular calcium levels affect spike potentials in barnacle muscle fibers.
  • Studied electrical properties using intracellular electrode techniques.
  • Injected various calcium-binding agents to observe their effects on spike initiation.
  • Examined calcium influx with Ca(45) under controlled conditions.
  • Injection of Ca-binding agents enabled spike potential initiation with a membrane overshoot increase of up to 29 mV per tenfold increase in external Ca concentration.
  • Threshold membrane potential for spikes shifted positively with rising external calcium levels.
  • Substitution of sodium with barium or strontium restored the spike potential, demonstrating calcium's critical role.

Abstract

Electrical properties of the muscle fiber membrane were studied in the barnacle, Balanus nubilus Darw. by using intracellular electrode techniques. A depolarization of the membrane does not usually produce an all-or-none spike potential in the normal muscle fiber even though a mechanical response is elicited. The intracellular injection of Ca(++)-binding agents (K(2)SO(4) and K salt of EDTA solution, K(3) citrate solution, etc.) renders the fiber capable of initiating all-or-none spikes. The overshoot of such a spike potential increases with increasing external Ca concentration, the increment for a tenfold increase in Ca concentration being about 29 mv. The threshold membrane potential for the spike and also for the K conductance increase shifts to more positive membrane potentials with increasing Ca(++)(out). The removal of Na ions from the external medium does not change the configuration of the spike potential. In the absence of Ca(++) in the external medium, the spike potential is restored by Ba(++) and Sr(++) but not by Mg(++). The overshoot of the spike potential increases with increasing Ba(++)(out) or Sr(++)(out). The Ca influx through the membrane of the fiber treated with K(2)SO(4) and EDTA was examined with Ca(45). The influx was 14 pmol per sec. per cm(2) for the resting membrane and 35 to 85 pmol per cm(2) for one spike. From these results it is concluded that the spike potential of the barnacle muscle fiber results from the permeability increase of the membrane to Ca(++) (Ba(++) or Sr(++)).

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Cite This Study

Hagiwara et al. (1964) studied this question.

synapsesocial.com/papers/6a239115bcda00f3e0a0114bhttps://doi.org/10.1085/jgp.48.1.141
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The effect of sodium ions on the electrical activity of the giant axon of the squid1949 · 3,543 citations
  2. 2The Effects of Various Ions on Resting and Spike Potentials of Barnacle Muscle Fibers1964 · 135 citations
  3. 3Membrane Properties of Barnacle Muscle Fiber1964 · 27 citations
  4. 4The action of calcium on the electrical properties of squid axons1957 · 1,841 citations
  5. 5Giant Muscle Fibers in a Barnacle, Balanus nubilus Darwin1963 · 34 citations