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Ca<sup>2+</sup>and activation mechanisms in skeletal muscle

Quarterly Reviews of BiophysicsPublished 1 February 1991
Christopher Ashley, I. P. Mulligan, T. J. Lea
Citations175
SJR quartileQ1
SJR score2.04
SNIP1.85

TL;DR

The majority of the calcium required for excitation-contraction coupling in vertebrate striated muscle fibres is derived from discrete intracellular stores located at sites within the cell: the terminal cysternae (tc)/junctional SR of the sarcoplasmic reticulum (SR) (Fig. 1 a).

Abstract

It has been known for a number of years that calcium ions play a crucial role in excitation-contraction (e-c) coupling (Sandow, 1952). The majority of the calcium required for this process is derived, at least in vertebrate striated muscle fibres, from discrete intracellular stores located at sites within the cell: the terminal cysternae (tc)/junctional SR of the sarcoplasmic reticulum (SR) (Fig. 1 a). These storage sites not only form a compartment that is distinct from the sarcoplasm of the fibre, but they are also closely associated with the contractile elements, the myofibrils. The SR release sites are activated following the spread of electrical activity (Huxley and Taylor, 1958) along the transverse (T) tubular system (Eisenberg and Gage, 1967; Adrian et al. 1969a, b; Peachey, 1973) from the surface membrane (Bm).

Keywords

MedicineBiochemistry, Genetics and Molecular Biology