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体外和体内校准低亲和力遗传 Ca 指示剂。

In vitro and in vivo calibration of low affinity genetic Ca indicators.

机构信息

Unidad de Excelencia, Instituto de Biomedicina y Genética Molecular de Valladolid (IBGM), Universidad de Valladolid y Consejo Superior de Investigaciones Científicas (CSIC), c/ Sanz y Forés 3, Valladolid 47003, Spain.

Unidad de Excelencia, Instituto de Biomedicina y Genética Molecular de Valladolid (IBGM), Universidad de Valladolid y Consejo Superior de Investigaciones Científicas (CSIC), c/ Sanz y Forés 3, Valladolid 47003, Spain.

出版信息

Cell Calcium. 2024 Jan;117:102819. doi: 10.1016/j.ceca.2023.102819. Epub 2023 Nov 8.

Abstract

Calcium is a universal intracellular messenger and proper Caconcentrations ([Ca]) both in the cytosol and in the lumen of cytoplasmic organelles are essential for cell functions. Ca homeostasis is achieved by a delicate pump/leak balance both at the plasma membrane and at the endomembranes, and improper Ca levels result in malfunction and disease. Selective intraorganellar Cameasurements are best achieved by using targeted genetically encoded Ca indicators (GECIs) but to calibrate the luminal fluorescent signals into accurate [Ca] is challenging, especially in vivo, due to the difficulty to normalize and calibrate the fluorescent signal in various tissues or conditions. We report here a procedure to calibrate the ratiometric signal of GAP (GFP-Aequorin Protein) targeted to the endo-sarcoplasmic reticulum (ER/SR) into [Ca] based on imaging of fluorescence after heating the tissue at 50-52 °C, since this value coincides with that obtained in the absence of Ca (R). Knowledge of the dynamic range (R/R) and the Ca-affinity (K) of the indicator permits calculation of [Ca] by applying a simple algorithm. We have validated this procedure in vitro using several cell types (HeLa, HEK 293T and mouse astrocytes), as well as in vivo in Drosophila. Moreover, this methodology is applicable to other low Ca affinity green and red GECIs.

摘要

钙是一种普遍存在的细胞内信使,细胞质和细胞质细胞器腔中的适当钙离子浓度 ([Ca]) 对于细胞功能至关重要。钙稳态是通过质膜和内质网膜上精细的泵/漏平衡来实现的,而钙离子水平不当会导致功能障碍和疾病。通过使用靶向基因编码钙指示剂 (GECI) 可以最好地实现细胞器内的钙选择性测量,但由于在各种组织或条件下难以对荧光信号进行归一化和校准,因此将腔内荧光信号校准为准确的 [Ca] 具有挑战性,特别是在体内。我们在这里报告了一种基于组织在 50-52°C 下加热后成像荧光来校准靶向内质网 (ER/SR) 的 GAP(GFP-Aequorin Protein)的比率信号到 [Ca] 的程序,因为该值与无钙时获得的值 (R) 相吻合。指示剂的动态范围 (R/R) 和钙亲和力 (K) 的知识允许通过应用简单的算法来计算 [Ca]。我们已经使用几种细胞类型(HeLa、HEK 293T 和小鼠星形胶质细胞)以及在体内在果蝇中验证了该程序,此外,该方法适用于其他低钙亲和力的绿色和红色 GECI。

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