Abstract
The effect of muscle length on smooth muscle contraction was evaluated by measuring myoplasmic [Ca2+] (with aequorin), myosin light chain phosphorylation, length, and isometric stress in histamine-stimulated swine carotid media preparations. Tissues were equilibrated at the optimal length for stress development (L(o)). Isometric contractions at short tissue lengths (0.7 L(o)) were associated with a decrease in maximal stress development. Isometric contraction at 0.7 L(o) also reduced the sensitivity to histamine as measured by steady-state increases in [Ca2+], phosphorylation, or stress. This suggests that decreased agonist sensitivity at shorter lengths is caused by reduced Ca2+ mobilization. Isotonic shortening also led to decreases in histamine sensitivity. Isometric contractions at 1.2 L(o) were not associated with significant changes in histamine-induced increases in [Ca2+]. The [Ca2+] dependence of phosphorylation was not altered at 0.7 or 1.2 L(o). Sinusoidal length changes from 0.95 to 1.05 L(o) at 1 Hz were not associated with significant changes in the resting or histamine-stimulated [Ca2+]. These results suggest that Ca2+ mobilization and the resulting contraction is relatively independent of length changes near L(o). Inactivation occurs at lengths substantially below L(o) where Ca2+ mobilization by agonists is impaired.
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Rembold, C. M., & Murphy, R. A. (1990). Muscle length, shortening, myoplasmic [Ca2+], and activation of arterial smooth muscle. Circulation Research, 66(5), 1354–1361. https://doi.org/10.1161/01.RES.66.5.1354
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