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基于实时 FRET 的原代海马神经元质膜微域中 Ca/PKA 动力学的测定。

Real-Time FRET-Based Measurements of Ca/PKA Dynamics in Plasma Membrane Microdomains of Primary Hippocampal Neurons.

机构信息

Department of Molecular Neurochemistry, Faculty of Health Sciences, Medical University, Lodz, Poland.

出版信息

Curr Protoc. 2024 May;4(5):e1048. doi: 10.1002/cpz1.1048.

Abstract

Both Ca and protein kinase A (PKA) are multifaceted and ubiquitous signaling molecules, essential for regulating the intricate network of signaling pathways. However, their dynamics within specialized membrane regions are still not well characterized. By using genetically encoded fluorescent indicators specifically targeted to distinct plasma membrane microdomains, we have established a protocol that permits observing Ca/PKA dynamics in discrete neuronal microdomains with high spatial and temporal resolution. The approach employs a fluorescence microscope with a sensitive camera and a dedicated CFP/YFP/mCherry filter set, enabling the simultaneous detection of donor-acceptor emission and red fluorescence signal. In this detailed step-by-step guide, we outline the experimental procedure, including isolation of rat primary neurons and their transfection with biosensors targeted to lipid rafts or non-raft regions of plasma membrane. We provide information on the necessary equipment and imaging setup required for recording, along with highlighting critical parameters and troubleshooting guidelines for real-time measurements. Finally, we provide examples of the observed Ca and PKA changes in specific cellular compartments. The application of this technique may have significant implications for studying cross-talk between second messengers and their alterations in various pathological conditions. © 2024 Wiley Periodicals LLC.

摘要

钙和蛋白激酶 A(PKA)都是多方面的和普遍存在的信号分子,对于调节复杂的信号通路网络至关重要。然而,它们在专门的膜区域内的动态仍然没有很好地表征。通过使用专门针对不同质膜微域的遗传编码荧光指示剂,我们建立了一种方案,允许以高时空分辨率观察离散神经元微域中的 Ca/PKA 动力学。该方法使用具有灵敏相机的荧光显微镜和专用的 CFP/YFP/mCherry 滤光片组,能够同时检测供体-受体发射和红色荧光信号。在这个详细的分步指南中,我们概述了实验程序,包括大鼠原代神经元的分离及其与针对质膜脂筏或非脂筏区域的生物传感器的转染。我们提供了记录所需的必要设备和成像设置的信息,并突出了实时测量的关键参数和故障排除指南。最后,我们提供了在特定细胞区室中观察到的 Ca 和 PKA 变化的示例。该技术的应用可能对研究第二信使之间的串扰及其在各种病理条件下的改变具有重要意义。© 2024 Wiley Periodicals LLC.

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