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首页> 外文期刊>American Journal of Physiology >Heterogeneity of mitochondrial matrix free ca2+: resolution of Ca2+ dynamics in individual mitochondria in situ.
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Heterogeneity of mitochondrial matrix free ca2+: resolution of Ca2+ dynamics in individual mitochondria in situ.

机译:线粒体基质游离ca2 +的异质性:单个线粒体中Ca2 +动力学的原位解析。

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The role of mitochondria in Ca2+ homeostasis is controversial. We employed the Ca2+-sensitive dye rhod 2 with novel, high temporal and spatial resolution imaging to evaluate changes in the matrix free Ca2+ concentration of individual mitochondria ([Ca2+]m) in agonist-stimulated, primary cultured aortic myocytes. Stimulation with 10 microM serotonin (5-HT) evoked modest cytosolic Ca2+ transients [cytosolic free Ca2+ concentration ([Ca2+]cyt) <500 nM; measured with fura 2] and triggered contractions in short-term cultured myocytes. However, 5-HT triggered a large mitochondrial rhod 2 signal (indicating pronounced elevation of [Ca2+]m) in only 4% of cells. This revealed heterogeneity in the responses of individual mitochondria, all of which stained with MitoTracker Green FM. In contrast, stimulation with 100 microM ATP evoked large cytosolic Ca2+ transients (>1,000 nM) and induced pronounced, reversible elevation of [Ca2+]m (measured as rhod 2 fluorescence) in 60% of cells. This mitochondrial Ca2+ uptake usually lagged behind the cytosolic Ca2+ transient peak by 3-5 s, and [Ca2+]m declined more slowly than did bulk [Ca2+]cyt. The uptake delay may prevent mitochondria from interfering with rapid signaling events while enhancing the mitochondrial response to large, long-duration elevations of [Ca2+]cyt. The responses of arterial myocytes to modest physiological stimulation do not, however, depend on such marked changes in [Ca2+]m.
机译:线粒体在Ca2 +稳态中的作用是有争议的。我们采用具有新颖,高时空分辨率的Ca2 +敏感染料Rhod 2,来评估激动剂刺激的原代培养主动脉心肌细胞中单个线粒体([Ca2 +] m)的游​​离基质Ca2 +浓度的变化。用10 microM血清素(5-HT)刺激引起适度的胞质Ca2 +瞬变[胞质游离Ca2 +浓度([Ca2 +] cyt)<500 nM;用呋喃2测定],并在短期培养的心肌细胞中触发收缩。但是,5-HT仅在4%的细胞中触发了大的线粒体rhod 2信号(表明[Ca2 +] m明显升高)。这揭示了单个线粒体反应的异质性,所有线粒体均被MitoTracker Green FM染色。相反,用100 microM ATP刺激会引起60%的细胞中较大的胞质Ca2 +瞬变(> 1,000 nM)并诱导[Ca2 +] m显着可逆升高(以Rhod 2荧光测量)。线粒体对Ca2 +的吸收通常滞后于胞质Ca2 +瞬态峰3-5 s,并且[Ca2 +] m的下降比大量[Ca2 +] cyt的下降更为缓慢。摄取延迟可以防止线粒体干扰快速的信号传递事件,同时增强线粒体对[Ca2 +] cyt的长期大幅度升高的反应。但是,动脉心肌细胞对适度的生理刺激的反应并不取决于[Ca2 +] m的明显变化。

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