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通过水母发光蛋白信号检测到的血管平滑肌细胞中的钙区室。

Calcium compartments in vascular smooth muscle cells as detected by aequorin signal.

作者信息

Abe F, Mitsui M, Karaki H, Endoh M

机构信息

Department of Pharmacology, Yamagata University School of Medicine, Japan.

出版信息

Br J Pharmacol. 1995 Dec;116(7):3000-4. doi: 10.1111/j.1476-5381.1995.tb15955.x.

Abstract
  1. To examine whether cytosolic Ca2+ in smooth muscle cells distributes evenly, cytosolic Ca2+ levels were measured with two different Ca2+ indicators in the ferret isolated portal vein; a fluorescent indicator, fura-PE3, that shows the average Ca2+ level, and a photoprotein, aequorin, that preferentially shows a high Ca2+ compartment. 2. A noradrenaline (10 microM)-induced sustained contraction was associated with a sustained increase in the fura-PE3 signal, or a transient increase followed by small sustained increase in the aequorin signal. A high K(+)-induced contraction was associated with a sustained increase in both the fura-PE3 and aequorin signals. 3. A second application of noradrenaline or high K+ induced reproducible contractions and fura-PE3 signals. In contrast, the aequorin signal resulting from a second application of noradrenaline or high K+ was much smaller than the first signal. 4. Following a 13 h but not a 3 h resting period, the aequorin signal stimulated by noradrenaline or high K+ recovered, without any change in the contractile response. 5. In Ca(2+)-free solution, high K+ was ineffective, whereas noradrenaline induced only a small aequorin signal and contraction compared to those obtained in the presence of external Ca2+. After the addition of Ca2+, the first application of noradrenaline induced a large aequorin signal and a large contraction, although a second application induced a much smaller aequorin signal accompanied by a large contraction. 6. These results suggest that high K+ and noradrenaline increase Ca2+ in at least two cytosolic compartments; a compartment that is coupled to the contractile mechanism ('contractile' Ca2+ compartment; major portion of cytoplasm containing contractile elements) and a compartment that is not coupled to contractile mechanisms ('non-contractile' Ca2+ compartment; small sub-membrane area that does not contain contractile elements). On stimulation, the Ca2+ level in the 'contractile' compartment may increase to a level high enough to stimulate myosin light chain kinase but not so high as to consume aequorin rapidly. In contrast, the Ca2+ level in the 'non-contractile' compartment may increase so greatly that aequorin in this compartment is rapidly consumed. These two compartments may be separated by a diffusion barrier and, during a resting period, aequorin may slowly diffuse from the 'contractile' compartment to the 'non-contractile' compartment and thus restore the full aequorin signal. An increase in Ca2+ in the 'non-contractile' compartment seems to be dependent mainly on Ca2+ influx and partly on Ca2+ release.
摘要
  1. 为了检测平滑肌细胞胞质中的Ca2+是否均匀分布,在雪貂离体门静脉中使用两种不同的Ca2+指示剂测量胞质Ca2+水平;一种荧光指示剂fura - PE3,它显示平均Ca2+水平,另一种是光蛋白水母发光蛋白,它优先显示高Ca2+区室。2. 去甲肾上腺素(10微摩尔)诱导的持续性收缩与fura - PE3信号的持续增加相关,或者与水母发光蛋白信号的短暂增加随后小幅持续增加相关。高钾诱导的收缩与fura - PE3和水母发光蛋白信号的持续增加相关。3. 再次施加去甲肾上腺素或高钾会诱导可重复的收缩和fura - PE3信号。相比之下,再次施加去甲肾上腺素或高钾所产生的水母发光蛋白信号比第一次信号小得多。4. 在13小时而非3小时的静息期后,去甲肾上腺素或高钾刺激的水母发光蛋白信号恢复,而收缩反应无任何变化。5. 在无Ca(2+)溶液中,高钾无效,而去甲肾上腺素与在有细胞外Ca2+存在时相比,仅诱导出小的水母发光蛋白信号和收缩。加入Ca2+后,第一次施加去甲肾上腺素诱导出大的水母发光蛋白信号和大的收缩,尽管第二次施加诱导出小得多的水母发光蛋白信号并伴有大的收缩。6. 这些结果表明,高钾和去甲肾上腺素至少在两个胞质区室中增加Ca2+;一个与收缩机制耦联的区室(“收缩性”Ca2+区室;含有收缩元件的细胞质主要部分)和一个与收缩机制不耦联的区室(“非收缩性”Ca2+区室;不含收缩元件的小的膜下区域)。受到刺激时,“收缩性”区室中的Ca2+水平可能升高到足以刺激肌球蛋白轻链激酶的水平,但不会高到迅速消耗水母发光蛋白的程度。相比之下,“非收缩性”区室中的Ca2+水平可能升高得如此之高,以至于该区室中的水母发光蛋白迅速被消耗。这两个区室可能被一个扩散屏障分隔开,并且在静息期,水母发光蛋白可能从“收缩性”区室缓慢扩散到“非收缩性”区室,从而恢复完整的水母发光蛋白信号。“非收缩性”区室中Ca2+的增加似乎主要依赖于Ca2+内流,部分依赖于Ca2+释放。

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