Departamento de Hiperreactividad Bronquial, Ismael Cosío Villegas, Instituto Nacional de Enfermedades Respiratorias, Calzada de Tlalpan 4502, Colonia Sección XVI, 14080 Mexico, DF, Mexico.
J Muscle Res Cell Motil. 2012 Mar;32(6):375-82. doi: 10.1007/s10974-011-9266-5. Epub 2011 Oct 15.
Ca(2+) and cGMP have opposite roles in many physiological processes likely due to a complex negative feedback regulation between them. Examples of opposite functions induced by Ca(2+) and cGMP are smooth muscle contraction and relaxation, respectively. A main Ca(2+) storage involved in contraction is sarcoplasmic reticulum (SR); nevertheless, the role of cGMP in the regulation of SR-Ca(2+) has not been completely understood. To evaluate this role, intracellular Ca(2+) concentration ([Ca(2+)]i) was determinated by a ratiometric method in isolated myocytes from bovine trachea incubated with Fura-2/AM. The release of Ca(2+) from SR induced by caffeine was transient, whereas caffeine withdrawal was followed by a [Ca(2+)]i undershoot. Caffeine-induced Ca(2+) transient peak and [Ca(2+)]i undershoot after caffeine were reproducible in the same cell. Dibutyryl cGMP (db-cGMP) blocked the [Ca(2+)]i undershoot and reduced the subsequent caffeine peak (SR-Ca(2+) loading). Both, the opening of SR channels with ryanodine (10 μM) and the blockade of SR-Ca(2+) ATPase with cyclopiazonic acid inhibited the [Ca(2+)]i undershoot as well as the SR-Ca(2+) loading. The addition of db-cGMP to ryanodine (10 μM) incubated cells partially restored the SR-Ca(2+) loading. Cyclic GMP enhanced [Ca(2+)]i undershoot induced by the blockade of ryanodine channels with 50 μM ryanodine. In conclusion, the reduction of SR-Ca(2+) content in airway smooth muscle induced by cGMP can be explained by the combination of SR-Ca(2+) loading and the simultaneous release of SR-Ca(2+). The reduction of SR-Ca(2+) content induced by cGMP might be a putative mechanism limiting releasable Ca(2+) in response to a particular stimulus.
钙离子 (Ca(2+)) 和环鸟苷酸 (cGMP) 在许多生理过程中发挥相反的作用,这可能是由于它们之间存在复杂的负反馈调节。Ca(2+) 和 cGMP 诱导的相反功能的例子分别是平滑肌的收缩和松弛。参与收缩的主要钙离子储存器是肌浆网 (SR);然而,cGMP 在调节 SR-Ca(2+) 中的作用尚未完全理解。为了评估这一作用,用 Fura-2/AM 孵育的牛气管分离肌细胞中通过比率法测定细胞内钙离子浓度 ([Ca(2+)]i)。咖啡因诱导的 SR 释放 Ca(2+) 是短暂的,而咖啡因撤出后则出现 [Ca(2+)]i 下冲。在同一细胞中,咖啡因诱导的 Ca(2+) 瞬变峰值和咖啡因后 [Ca(2+)]i 下冲可重复出现。二丁基环鸟苷 (db-cGMP) 阻断 [Ca(2+)]i 下冲并降低随后的咖啡因峰值 (SR-Ca(2+) 加载)。用ryanodine (10 μM) 打开 SR 通道以及用环匹阿尼酸抑制 SR-Ca(2+)ATP 酶都抑制 [Ca(2+)]i 下冲和 SR-Ca(2+) 加载。将 db-cGMP 添加到 ryanodine (10 μM) 孵育的细胞中,部分恢复了 SR-Ca(2+) 加载。环鸟苷酸增强了 50 μM ryanodine 阻断 ryanodine 通道引起的 [Ca(2+)]i 下冲。总之,cGMP 诱导的气道平滑肌 SR-Ca(2+) 含量减少可归因于 SR-Ca(2+) 加载和同时释放 SR-Ca(2+) 的组合。cGMP 诱导的 SR-Ca(2+) 含量减少可能是限制特定刺激下可释放 Ca(2+) 的一种潜在机制。