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Development of a Dual Reporter System to Simultaneously Visualize Ca<sup>2+</sup> Signals and AMPK Activity.


ABSTRACT: In this study, we introduce a new separation of phases-based activity reporter of kinase (SPARK) for AMP-activated kinase (AMPK), named AMPK-SPARK, which reports the AMPK activation by forming bright fluorescent clusters. Furthermore, we introduce a dual reporter system, named GCaMP-AMPK-SPARK, by incorporating a single-fluorescent protein (FP)-based Ca2+ biosensor, GCaMP6f, into our initial design, enabling simultaneous monitoring of Ca2+ levels and AMPK activity. This system offers the essential quality of information by single-channel fluorescence microscopy without the need for coexpression of different biosensors and elaborate filter layouts to overcome spectral limitations. We used AMPK-SPARK to map endogenous AMPK activity in different cell types and visualized the dynamics of AMPK activation in response to various stimuli. Using GCaMP-AMPK-SPARK, we revealed cell-to-cell heterogeneities in AMPK activation by Ca2+ mobilization. We anticipate that this dual reporter strategy can be employed to study the intricate interplays between different signaling networks and kinase activities.

SUBMITTER: Erdogan YC 

PROVIDER: S-EPMC11443530 | biostudies-literature | 2024 Sep

REPOSITORIES: biostudies-literature

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Development of a Dual Reporter System to Simultaneously Visualize Ca&lt;sup&gt;2+&lt;/sup&gt; Signals and AMPK Activity.

Erdoğan Yusuf C YC   Pilic Johannes J   Gottschalk Benjamin B   Yiğit Esra N EN   Zaki Asal G AG   Öztürk Gürkan G   Eroğlu Emrah E   Okutan Begüm B   Sommer Nicole G NG   Weinberg Annelie M AM   Schindl Rainer R   Graier Wolfgang F WF   Malli Roland R  

ACS sensors 20240821 9


In this study, we introduce a new separation of phases-based activity reporter of kinase (SPARK) for AMP-activated kinase (AMPK), named AMPK-SPARK, which reports the AMPK activation by forming bright fluorescent clusters. Furthermore, we introduce a dual reporter system, named GCaMP-AMPK-SPARK, by incorporating a single-fluorescent protein (FP)-based Ca<sup>2+</sup> biosensor, GCaMP6f, into our initial design, enabling simultaneous monitoring of Ca<sup>2+</sup> levels and AMPK activity. This sys  ...[more]

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