4.8 Article

Spatial regulation of AMPK signaling revealed by a sensitive kinase activity reporter

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NATURE COMMUNICATIONS
卷 13, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-022-31190-x

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  1. National Institutes of Health [NIH/NCI T32 CA009523, NIH/NIGMS K12 GM068524, R35 CA197622, R01 HL162302, R01 DE030497, R35 CA220538, P01 CA120964]
  2. University of California President's Postdoctoral Fellowship
  3. Air Force Office of Scientific Research [FA9500-18-1-0051]

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AMP-activated protein kinase (AMPK) is a master regulator of cellular metabolism. Researchers have developed a sensitive biosensor for AMPK and used it to uncover mechanisms for AMPK activity in the lysosome and nucleus.
AMP-activated protein kinase (AMPK) is a master regulator of cellular energetics which coordinates metabolism by phosphorylating a plethora of substrates throughout the cell. But how AMPK activity is regulated at different subcellular locations for precise spatiotemporal control over metabolism is unclear. Here we present a sensitive, single-fluorophore AMPK activity reporter (ExRai AMPKAR), which reveals distinct kinetic profiles of AMPK activity at the mitochondria, lysosome, and cytoplasm. Genetic deletion of the canonical upstream kinase liver kinase B1 (LKB1) results in slower AMPK activity at lysosomes but does not affect the response amplitude at lysosomes or mitochondria, in sharp contrast to the necessity of LKB1 for maximal cytoplasmic AMPK activity. We further identify a mechanism for AMPK activity in the nucleus, which results from cytoplasmic to nuclear shuttling of AMPK. Thus, ExRai AMPKAR enables illumination of the complex subcellular regulation of AMPK signaling. AMP activated protein kinase (AMPK) is a master regulator of cellular metabolism, but how AMPK activity is spatiotemporally regulated remains unclear. Here, Schmitt et al develop a sensitive biosensor for AMPK, which they use to uncover mechanisms for AMPK activity in the lysosome and nucleus.

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