D'Angelo E K, Singer H A, Rembold C M
Department of Internal Medicine, University of Virginia Health Sciences Center, Charlottesville 22908.
J Clin Invest. 1992 Jun;89(6):1988-94. doi: 10.1172/JCI115807.
Elevations in extracellular [Mg2+] ([Mg2+]o) relax vascular smooth muscle. We tested the hypothesis that elevated [Mg2+]o induces relaxation through reductions in myoplasmic [Ca2+] and myosin light chain phosphorylation without changing intracellular [Mg2+] ([Mg2+]i). Histamine stimulation of endothelium-free swine carotid medial tissues was associated with increases in both Fura 2- and aequorin-estimated myoplasmic [Ca2+], myosin phosphorylation, and force. Elevated [Mg2+]o decreased myoplasmic [Ca2+] and force to near resting values. However, elevated [Mg2+]o only transiently decreased myosin phosphorylation values: sustained [Mg2+]o-induced decreases in myoplasmic [Ca2+] and force were associated with inappropriately high myosin phosphorylation values. The elevated myosin phosphorylation during [Mg2+]o-induced relaxation was entirely on serine 19, the Ca2+/calmodulin-dependent myosin light chain kinase substrate. Myoplasmic [Mg2+] (estimated with Mag-Fura 2) did not significantly increase with elevated [Mg2+]o. These results are consistent with the hypothesis that increased [Mg2+]o induces relaxation by decreasing myoplasmic [Ca2+] without changing [Mg2+]i. These data also demonstrate dissociation of myosin phosphorylation from myoplasmic [Ca2+] and force during Mg(2+)-induced relaxation. This finding suggests the presence of a phosphorylation-independent (yet potentially Ca(2+)-dependent) mechanism for regulation of force in vascular smooth muscle.
细胞外[Mg2+]([Mg2+]o)升高可使血管平滑肌舒张。我们检验了这样一个假设,即升高的[Mg2+]o通过降低肌浆[Ca2+]和肌球蛋白轻链磷酸化来诱导舒张,而不改变细胞内[Mg2+]([Mg2+]i)。用组胺刺激无内皮的猪颈动脉中膜组织,可使Fura 2和水母发光蛋白估计的肌浆[Ca2+]、肌球蛋白磷酸化及张力均增加。升高[Mg2+]o可使肌浆[Ca2+]和张力降至接近静息值。然而,升高[Mg2+]o仅短暂降低肌球蛋白磷酸化值:[Mg2+]o持续诱导的肌浆[Ca2+]和张力降低与肌球蛋白磷酸化值过高不相称。[Mg2+]o诱导舒张期间肌球蛋白磷酸化升高完全发生在丝氨酸19上,丝氨酸19是Ca2+/钙调蛋白依赖性肌球蛋白轻链激酶的底物。用Mag-Fura 2估计的肌浆[Mg2+]不会随[Mg2+]o升高而显著增加。这些结果与以下假设一致,即升高的[Mg2+]o通过降低肌浆[Ca2+]而不改变[Mg2+]i来诱导舒张。这些数据还表明,在Mg(2+)诱导的舒张过程中,肌球蛋白磷酸化与肌浆[Ca2+]和张力解离。这一发现提示,血管平滑肌中存在一种不依赖磷酸化(但可能依赖Ca(2+))的力调节机制。