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钙浓度钳制:使用光不稳定螯合剂DM-硝基苯酚产生的尖峰和可逆脉冲。

The calcium concentration clamp: spikes and reversible pulses using the photolabile chelator DM-nitrophen.

作者信息

Zucker R S

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley.

出版信息

Cell Calcium. 1993 Feb;14(2):87-100. doi: 10.1016/0143-4160(93)90079-l.

Abstract

New procedures are described for producing brief transients and reversible elevations in [Ca] that can be used to quantitatively control the concentration of cytoplasmic calcium. If the photolabile calcium chelator DM-nitrophen, partially bound to calcium, is exposed to steady illumination, [Ca] can be raised from a few nM to up to 10 microM for durations of 100 ms or longer, depending on light intensity and duration. An association rate of calcium with nitrophen of 1.5 x 10(6) M-1s-1 was estimated from measurements of [Ca] using the fluorescent indicator Fluo-3, and calcium was found to speed the photolysis of nitrophen 2.5-times. Partial photolysis of DM-nitrophen partly loaded with calcium elicits a [Ca] spike of over 100 microM lasting about 1 ms, depending on intensity and duration of the light flash. Simulations of the reactions involved predict changes in Fluo-3 fluorescence measured at high time resolution with a laser scanning confocal microscope. These procedures have been applied in physiological experiments to generate cytoplasmic [Ca] spikes and pulses and study the cellular responses to them.

摘要

本文描述了产生短暂瞬变和[Ca]可逆升高的新方法,这些方法可用于定量控制细胞质钙浓度。如果部分结合钙的光不稳定钙螯合剂DM-硝基苯酚受到稳定光照,[Ca]可在100毫秒或更长时间内从几纳摩尔升高到高达10微摩尔,这取决于光强度和持续时间。通过使用荧光指示剂Fluo-3测量[Ca],估计钙与硝基苯酚的缔合速率为1.5×10(6) M-1s-1,并且发现钙使硝基苯酚的光解速度加快2.5倍。部分负载钙的DM-硝基苯酚的部分光解会引发超过100微摩尔的[Ca]尖峰,持续约1毫秒,这取决于闪光的强度和持续时间。对所涉及反应的模拟预测了用激光扫描共聚焦显微镜在高时间分辨率下测量的Fluo-3荧光变化。这些方法已应用于生理实验中,以产生细胞质[Ca]尖峰和脉冲,并研究细胞对它们的反应。

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