Blocking AMPK β1 myristoylation enhances AMPK activity and protects mice from high-fat diet-induced obesity and hepatic steatosis
Journal article
Neopane, Katyayanee, Kozlov, Natalie, Negoita, Florentina, Murray-Segal, Lisa, Brink, Robert, Hoque, Ashfaqul, Ovens, Ashley J., Tjin, Gavin, McAloon, Luke M., Yu, Dingyi, Ling, Naomi X. Y., Sanders, Matthew J., Oakhill, Jonathan S., Scott, John W., Steinberg, Gregory R., Loh, Kim, Kemp, Bruce E., Sakamoto, Kei and Galic, Sandra. (2022). Blocking AMPK β1 myristoylation enhances AMPK activity and protects mice from high-fat diet-induced obesity and hepatic steatosis. Cell Reports. 41(12), pp. 1-16. https://doi.org/10.1016/j.celrep.2022.111862
Authors | Neopane, Katyayanee, Kozlov, Natalie, Negoita, Florentina, Murray-Segal, Lisa, Brink, Robert, Hoque, Ashfaqul, Ovens, Ashley J., Tjin, Gavin, McAloon, Luke M., Yu, Dingyi, Ling, Naomi X. Y., Sanders, Matthew J., Oakhill, Jonathan S., Scott, John W., Steinberg, Gregory R., Loh, Kim, Kemp, Bruce E., Sakamoto, Kei and Galic, Sandra |
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Abstract | AMP-activated protein kinase (AMPK) is a master regulator of cellular energy homeostasis and a therapeutic target for metabolic diseases. Co/post-translational N-myristoylation of glycine-2 (Gly2) of the AMPK β subunit has been suggested to regulate the distribution of the kinase between the cytosol and membranes through a “myristoyl switch” mechanism. However, the relevance of AMPK myristoylation for metabolic signaling in cells and in vivo is unclear. Here, we generated knockin mice with a Gly2-to-alanine point mutation of AMPKβ1 (β1-G2A). We demonstrate that non-myristoylated AMPKβ1 has reduced stability but is associated with increased kinase activity and phosphorylation of the Thr172 activation site in the AMPK α subunit. Using proximity ligation assays, we show that loss of β1 myristoylation impedes colocalization of the phosphatase PPM1A/B with AMPK in cells. Mice carrying the β1-G2A mutation have improved metabolic health with reduced adiposity, hepatic lipid accumulation, and insulin resistance under conditions of high-fat diet-induced obesity. |
Keywords | signal transduction; AMPK; phosphatase; myristoylation; steatosis; adiposity |
Year | 2022 |
Journal | Cell Reports |
Journal citation | 41 (12), pp. 1-16 |
Publisher | Cell Press |
ISSN | 2211-1247 |
Digital Object Identifier (DOI) | https://doi.org/10.1016/j.celrep.2022.111862 |
PubMed ID | 36543129 |
Scopus EID | 2-s2.0-85144389434 |
Open access | Published as ‘gold’ (paid) open access |
Page range | 1-16 |
Funder | Australian Research Council (ARC) |
National Health and Medical Research Council (NHMRC) | |
Operational Infrastructure Support (OIS) Program, Victorian Government | |
Canada Research Chairs Program | |
J. Bruce Duncan Endowed Chair in Metabolic Diseases | |
Novo Nordisk Foundation | |
Publisher's version | License File Access Level Open |
Output status | Published |
Publication dates | |
Online | 20 Dec 2022 |
Publication process dates | |
Accepted | 30 Nov 2022 |
Deposited | 19 Jul 2023 |
Supplemental file | License File Access Level Open |
ARC Funded Research | This output has been funded, wholly or partially, under the Australian Research Council Act 2001 |
Grant ID | DP170101196 |
1085460 | |
1145836 | |
1145265 | |
NNF18CC0034900 |
https://acuresearchbank.acu.edu.au/item/8z5v8/blocking-ampk-1-myristoylation-enhances-ampk-activity-and-protects-mice-from-high-fat-diet-induced-obesity-and-hepatic-steatosis
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OA_Neopane_2022_Blocking_AMPK_β1_myristoylation_enhances_AMPK.pdf | |
License: CC BY-NC-ND 4.0 | |
File access level: Open |
Supplemental file
OA_Neopane_2022_Blocking_AMPK_β1_myristoylation_enhances_AMPK_[GRAPHICAL_ABSTRACT].jpg | |
License: CC BY-NC-ND 4.0 | |
File access level: Open |
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