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有丝分裂过程中持久且快速的钙变化。

Long-lasting and rapid calcium changes during mitosis.

作者信息

Ratan R R, Maxfield F R, Shelanski M L

机构信息

Department of Pharmacology, New York University School of Medicine, New York 10016.

出版信息

J Cell Biol. 1988 Sep;107(3):993-9. doi: 10.1083/jcb.107.3.993.

Abstract

A more complete understanding of calcium's role in cell division requires knowledge of the timing, magnitude, and duration of changes in cytoplasmic-free calcium, [Ca2+]i, associated with specific mitotic events. To define the temporal relationship of changes in [Ca2+]i to cellular and chromosomal movements, we have measured [Ca2+]i every 6-7 s in single-dividing Pt K2 cells using fura-2 and microspectrophotometry, coupling each calcium measurement with a bright-field observation. In the 12 min before discernable chromosome some separation, 90% of metaphase cells show at least one transient of increased [Ca2+]i, 72% show their last transient within 5 min, and a peak of activity is seen at 3 min before chromosome separation. The mean [Ca2+]i of the metaphase transients is 148 +/- 31 nM (61 transients in 35 cells) with an average duration of 21 +/- 14 s. The timing of these increases makes it unlikely that these transient increases in [Ca2+]i are acting directly to trigger the start of anaphase. However, it is possible that a transient rise in calcium during late metaphase is part of a more complex progression to anaphase. In addition to these transient changes, a gradual increase in [Ca2+]i was observed starting in late anaphase. Within the 2 min surrounding cytokinesis onset, 82% of cells show a transient increase in [Ca2+]i to 171 +/- 48 nM (53 transients in 32 cells). The close temporal correlation of these changes with cleavage is consistent with a more direct role for calcium in this event, possibly by activating the contractile system. To assess the specificity of these changes to the mitotic cycle, we examined calcium changes in interphase cells. Two-thirds of interphase cells show no transient increases in calcium with a mean [Ca2+]i of 100 +/- 18 nM (n = 12). However, one-third demonstrate dramatic and repeated transient increases in [Ca2+]i. The mean peak [Ca2+]i of these transients is 389 +/- 70 nM with an average duration of 77 s. The necessity of any of these transient changes in calcium for the completion of mitotic or interphase activities remains under investigation.

摘要

要更全面地理解钙在细胞分裂中的作用,需要了解与特定有丝分裂事件相关的细胞质游离钙([Ca2+]i)变化的时间、幅度和持续时间。为了确定[Ca2+]i变化与细胞和染色体运动的时间关系,我们使用fura-2和显微分光光度法,每隔6-7秒测量一次单个分裂的Pt K2细胞中的[Ca2+]i,并将每次钙测量与明场观察相结合。在可辨别的染色体开始分离前的12分钟内,90%的中期细胞显示至少有一次[Ca2+]i升高的瞬变,72%的细胞在5分钟内显示最后一次瞬变,并且在染色体分离前3分钟出现活动峰值。中期瞬变的平均[Ca2+]i为148±31 nM(35个细胞中的61次瞬变),平均持续时间为21±14秒。这些升高的时间表明,这些[Ca2+]i的瞬态升高不太可能直接触发后期的开始。然而,中期后期钙的瞬态升高可能是向后期更复杂进展的一部分。除了这些瞬态变化外,从后期后期开始观察到[Ca2+]i逐渐增加。在胞质分裂开始前后的2分钟内,82%的细胞显示[Ca2+]i瞬态增加至171±48 nM(32个细胞中的53次瞬变)。这些变化与分裂的紧密时间相关性表明钙在这一事件中可能发挥更直接的作用,可能是通过激活收缩系统。为了评估这些变化对有丝分裂周期的特异性,我们检查了间期细胞中的钙变化。三分之二的间期细胞显示钙没有瞬态增加,平均[Ca2+]i为100±18 nM(n = 12)。然而,三分之一的细胞显示[Ca2+]i有剧烈且重复的瞬态增加。这些瞬变的平均峰值[Ca2+]i为389±70 nM,平均持续时间为77秒。这些钙的瞬态变化对于完成有丝分裂或间期活动的必要性仍在研究中。

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