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基于肌钙蛋白C和绿色荧光蛋白的细胞钙动力学基因编码指示剂。

Genetically encoded indicators of cellular calcium dynamics based on troponin C and green fluorescent protein.

作者信息

Heim Nicola, Griesbeck Oliver

机构信息

AG Zelluläre Dynamik, Max-Planck-Institut für Neurobiologie, 82152 Martinsried, Germany.

出版信息

J Biol Chem. 2004 Apr 2;279(14):14280-6. doi: 10.1074/jbc.M312751200. Epub 2004 Jan 24.

Abstract

Genetic calcium probes offer tremendous potential in the fields of neuroscience, cell biology, and pharmaceutical screening. Previously, ratiometric and non-ratiometric indicators of cellular calcium dynamics have been described that consist of mutants of the green fluorescent protein (GFP) as fluorophores and calmodulin as calcium-binding moiety in several configurations. However, these calmodulin-based types of probes have a series of deficiencies, such as reduced dynamic ranges, when expressed within transgenic organisms and lack of calcium sensitivity in certain targetings. We developed novel types of calcium probes based on troponin C variants from skeletal and cardiac muscle. These indicators have ratio changes up to 140%, K(d)s ranging from 470 nm to 29 microm, and improved subcellular targeting properties. We targeted the indicators to the plasma membrane of HEK293 cells and primary hippocampal neurons. Upon long lasting depolarization, submembrane calcium levels in hippocampal neurons were found to be in equilibrium with bulk cytosolic calcium levels, suggesting no standing gradient persists from the membrane toward the cytosol. We expect that such novel indicators using specialized calcium sensing proteins will be minimally interacting with the cellular biochemical machinery.

摘要

基因钙探针在神经科学、细胞生物学和药物筛选领域具有巨大潜力。此前,已经描述了细胞钙动力学的比率型和非比率型指示剂,它们由绿色荧光蛋白(GFP)的突变体作为荧光团以及钙调蛋白作为几种构型中的钙结合部分组成。然而,这些基于钙调蛋白的探针类型存在一系列缺陷,例如在转基因生物体内表达时动态范围降低,以及在某些靶向中缺乏钙敏感性。我们基于骨骼肌和心肌的肌钙蛋白C变体开发了新型钙探针。这些指示剂的比率变化高达140%,解离常数(K(d))范围为470纳米至29微米,并且亚细胞靶向特性得到改善。我们将这些指示剂靶向到HEK293细胞和原代海马神经元的质膜。在长时间去极化后,发现海马神经元质膜下的钙水平与胞质钙水平处于平衡状态,这表明从膜到胞质不存在持续的静息梯度。我们预计,使用专门钙传感蛋白的此类新型指示剂与细胞生化机制的相互作用将最小化。

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