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AktAR 和 Akt-STOPS:用于在活细胞中不同亚细胞位置可视化和干扰 Akt 激酶活性的遗传可编码分子工具。

AktAR and Akt-STOPS: Genetically Encodable Molecular Tools to Visualize and Perturb Akt Kinase Activity at Different Subcellular Locations in Living Cells.

机构信息

Department of Pharmacology, University of California, San Diego, La Jolla, California.

Department of Chemistry & Biochemistry, University of California, San Diego, La Jolla, California.

出版信息

Curr Protoc. 2022 May;2(5):e416. doi: 10.1002/cpz1.416.

Abstract

The serine/threonine protein kinase Akt integrates diverse upstream inputs to regulate cell survival, growth, metabolism, migration, and differentiation. Mounting evidence suggests that Akt activity is differentially regulated depending on its subcellular location, which can include the plasma membrane, endomembrane, and nuclear compartment. This spatial control of Akt activity is critical for achieving signaling specificity and proper physiological functions, and deregulation of compartment-specific Akt signaling is implicated in various diseases, including cancer and diabetes. Understanding the spatial coordination of the signaling network centered around this key kinase and the underlying regulatory mechanisms requires precise tracking of Akt activity at distinct subcellular compartments within its native biological contexts. To address this challenge, new molecular tools are being developed, enabling us to directly interrogate the spatiotemporal regulation of Akt in living cells. These include, for instance, the newly developed genetically encodable fluorescent-protein-based Akt kinase activity reporter (AktAR2), which serves as a substrate surrogate of Akt kinase and translates Akt-specific phosphorylation into a quantifiable change in Förster resonance energy transfer (FRET). In addition, we developed the Akt substrate tandem occupancy peptide sponge (Akt-STOPS), which allows biochemical perturbation of subcellular Akt activity. Both molecular tools can be readily targeted to distinct subcellular localizations. Here, we describe a workflow to study Akt kinase activity at different subcellular locations in living cells. We provide a protocol for using genetically targeted AktAR2 and Akt-STOPS, along with fluorescence imaging in living NIH3T3 cells, to visualize and perturb, respectively, the activity of endogenous Akt kinase at different subcellular compartments. We further describe a protocol for using chemically inducible dimerization (CID) to control the plasma membrane-specific inhibition of Akt activity in real time. Lastly, we describe a protocol for maintaining NIH3T3 cells in culture, a cell line known to exhibit robust Akt activity. In all, this approach enables interrogation of spatiotemporal regulation and functions of Akt, as well as the intricate signaling networks in which it is embedded, at specific subcellular locations. © 2022 Wiley Periodicals LLC. Basic Protocol 1: Visualizing and perturbing subcellular Akt kinase activity using AktAR and Akt-STOPS Basic Protocol 2: Using chemically inducible dimerization (CID) to control inhibition of Akt at the plasma membrane Support Protocol: Maintaining NIH3T3 cells in culture.

摘要

丝氨酸/苏氨酸蛋白激酶 Akt 整合了多种上游输入信号来调节细胞存活、生长、代谢、迁移和分化。越来越多的证据表明,Akt 的活性根据其亚细胞位置而不同地调节,这些位置包括质膜、内膜和核区室。Akt 活性的这种空间控制对于实现信号特异性和适当的生理功能至关重要,并且特定区室的 Akt 信号的失调与各种疾病有关,包括癌症和糖尿病。了解围绕这种关键激酶的信号网络的空间协调及其潜在的调节机制需要在其天然生物环境中精确跟踪 Akt 活性在不同亚细胞区室中的分布。为了解决这一挑战,新的分子工具正在被开发出来,使我们能够直接在活细胞中检测 Akt 的时空调节。例如,新开发的遗传可编码荧光蛋白基 Akt 激酶活性报告子(AktAR2),它可作为 Akt 激酶的底物替代物,并将 Akt 特异性磷酸化转化为Förster 共振能量转移(FRET)的可量化变化。此外,我们开发了 Akt 底物串联占位肽海绵(Akt-STOPS),它允许对亚细胞 Akt 活性进行生化干扰。这两种分子工具都可以很容易地靶向不同的亚细胞定位。在这里,我们描述了一种在活细胞中研究不同亚细胞位置 Akt 激酶活性的工作流程。我们提供了使用遗传靶向 AktAR2 和 Akt-STOPS 的方案,以及在活 NIH3T3 细胞中进行荧光成像,分别可视化和干扰内源性 Akt 激酶在不同亚细胞区室中的活性。我们进一步描述了使用化学诱导二聚化(CID)实时控制 Akt 活性的质膜特异性抑制的方案。最后,我们描述了维持 NIH3T3 细胞培养的方案,该细胞系以具有强大 Akt 活性而闻名。总之,这种方法能够在特定的亚细胞位置上研究 Akt 的时空调节和功能,以及它所嵌入的复杂信号网络。

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Subcellular Transcriptomics and Proteomics: A Comparative Methods Review.亚细胞转录组学和蛋白质组学:比较方法综述。
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Control of Akt activity and substrate phosphorylation in cells.细胞中 Akt 活性和底物磷酸化的控制。
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