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首页> 外文期刊>Journal of cell biology >Imaging calcium dynamics in living plants using semi-synthetic recombinant aequorins.
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Imaging calcium dynamics in living plants using semi-synthetic recombinant aequorins.

机译:使用半合成重组水母发光蛋白对活植物中的钙动力学进行成像。

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摘要

The genetic transformation of the higher plant Nicotiana plumbaginifolia to express the protein apoaequorin has recently been used as a method to measure cytosolic free calcium ([Ca2+]i) changes within intact living plants (Knight, M. R., A. K. Campbell, S. M. Smith, and A. J. Trewavas. 1991. Nature (Lond.). 352:524-526; Knight, M. R., S. M. Smith, and A. J. Trewavas. 1992. Proc. Natl. Acad. Sci. USA. 89:4967-4971). After treatment with the luminophore coelenterazine the calcium-activated photoprotein aequorin is formed within the cytosol of the cells of the transformed plants. Aequorin emits blue light in a dose-dependent manner upon binding free calcium (Ca2+). Thus the quantification of light emission from coelenterazine-treated transgenic plant cells provides a direct measurement of [Ca2+]i. In this paper, by using a highly sensitive photon-counting camera connected to a light microscope, we have for the first time imaged changes in [Ca2+]i in response to cold-shock, touch and wounding in different tissues of transgenic Nicotiana plants. Using this approach we have been able to observe tissue-specific [Ca2+]i responses. We also demonstrate how this method can be tailored by the use of different coelenterazine analogues which endow the resultant aequorin (termed semi-synthetic recombinant aeqorin) with different properties. By using h-coelenterazine, which renders the recombinant aequorin reporter more sensitive to Ca2+, we have been able to image relatively small changes in [Ca2+]i in response to touch and wounding: changes not detectable when standard coelenterazine is used. Reconstitution of recombinant aequorin with another coelenterazine analogue (e-coelenterazine) produces a semi-synthetic recombinant aequorin with a bimodal spectrum of luminescence emission. The ratio of luminescence at two wavelengths (421 and 477 nm) provides a simpler method for quantification of [Ca2+]i in vivo than was previously available. This approach has the benefit that no information is needed on the amount of expression, reconstitution or consumption of aequorin which is normally required for calibration with aequorin.
机译:最近,高等植物烟草的遗传转化表达了载脂蛋白水母蛋白,已被用作测量完整活植物(骑士,MR,AK坎贝尔,SM史密斯和AJ)中胞质游离钙([Ca2 +] i)变化的方法。 Trewavas.1991.Nature(Lond。)352:524-526; Knight,MR,SM Smith和AJ Trewavas.1992.Proc.Natl.Acad.Sci.USA.89:4967-4971)。用发光体腔肠素处理后,在转化植物细胞的细胞质内形成钙激活的光蛋白水母发光蛋白。结合游离钙(Ca2 +)后,水母发光蛋白以剂量依赖性方式发射蓝光。因此,腔肠素处理过的转基因植物细胞发光的定量提供了[Ca2 +] i的直接测量。在本文中,通过使用连接到光学显微镜的高灵敏度光子计数相机,我们首次获得了对[Ca2 +] i变化的成像,该变化是对转基因烟草植物不同组织的冷冲击,触碰和伤害的反应。使用这种方法,我们已经能够观察到组织特异性的[Ca2 +] i反应。我们还证明了如何通过使用不同的腔肠素类似物来定制该方法,所述类似物赋予所得的水母发光蛋白(称为半合成重组水母发光蛋白)具有不同的特性。通过使用h-coelenterazine,它使重组水母发光蛋白报告基因对Ca2 +更加敏感,我们已经能够成像[Ca2 +] i相对较小的变化,以应对触碰和伤害:使用标准腔肠素时,无法检测到这些变化。重组水母发光蛋白与另一腔肠素类似物(e-coelenterazine)的重组产生了一种半合成的重组水母发光蛋白,具有双峰光谱的发光光谱。在两个波长(421和477 nm)处的发光比提供了比以前可用的更简单的定量体内[Ca2 +] i的方法。这种方法的优点是不需要有关水母发光蛋白的表达,重组或消耗的信息,而水母发光蛋白的校准通常需要这些信息。

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