#NUAK1
Check out our recent review on the AMPK-related kinases NUAK1 and NUAK2 here:
doi.org/10.1042/EBC2...
NUAK: never underestimate a kinase
Abstract. NUAK1 and NUAK2 belong to a family of kinases related to the catalytic α-subunits of the AMP-activated protein kinase (AMPK) complexes. Despite canonical activation by the tumour suppressor ...
doi.org
November 25, 2024 at 8:57 AM
Here's the preprint of Josie's awesome thesis work (should be out in a journal soon):
Chemical Genetic Screen Identifies PSD3 as a Direct Substrate of NUAK1 that Regulates Dendritic Spine Maturation
Novel (nua) Kinase 1 (NUAK1) encodes a serine-threonine protein kinase, mutations in which are associated with autism spectrum disorder. Direct phosphorylation targets of NUAK1 have been elusive hinde...
www.biorxiv.org
June 11, 2026 at 5:50 PM
I am happy to share our latest work now posted on @biorxiv-neursci.bsky.social
We report that the #AMPK related kinase #NUAK1 teams up with splicing co-factor SON to regulate #RNAsplicing in developing cortical neurons, supporting axon growth and branching

www.biorxiv.org/content/10.1...
The AMPK-related kinase NUAK1 regulates neuronal morphogenesis through the RNA splicing co-factor SON
In recent years, alternative splicing emerged as a major mechanism controlling gene-regulatory networks during brain development, yet how alternative splicing is tuned to the dynamic alterations under...
www.biorxiv.org
October 18, 2025 at 10:36 AM
The AMPK-related kinase NUAK1 regulates neuronal morphogenesis through the RNA splicing co-factor SON https://www.biorxiv.org/content/10.1101/2025.10.10.681550v1
October 11, 2025 at 4:15 AM
NUAK1 geni, hücre iskeletini koruyan varyantları, beyin korteksinde daha "genç" görünümle ilişkilendirildi.
April 29, 2026 at 10:22 AM
Plasmodium falciparum exploits NUAK1 to establish infection in human erythrocytes https://www.biorxiv.org/content/10.1101/2025.10.30.685469v1
October 31, 2025 at 2:19 AM
RRIDs were included in this paper. We value the author's support of reproducibility. #OpenResearch #accelerateopenscience #reproducibility
Chemical Genetic Screen Identifies PSD3 as a Direct Substrate of NUAK1 that Regulates Dendritic Spine Maturation
Read the full paper: Chemical Genetic Screen Identifies PSD3 as a Direct Substrate of NUAK1 that Regulates Dendritic Spine Maturation
doi.org
June 7, 2026 at 7:04 AM
RRID:Addgene_52963 was used by the authors of the Cell Reports Medicine paper "Targeting the mevalonate pathway potentiates NUAK1 inhibition-induced immunogenic cell death and antitumor immunity". RRIDs like this improve reproducibility in scientific research. #methodsmatter #reproducibility
doi.org
April 2, 2025 at 7:00 AM
Spatial and Single-Cell Analyses Reveal the Pro-Invasiveness Role of NUAK1 in Breast Cancer through EMT Regulation #SingleCell
https://www.researchsquare.com/article/rs-5300363/latest
November 16, 2024 at 7:41 AM
Plasmodium falciparum exploits NUAK1 to establish infection in human erythrocytes bioRxivpreprint
Plasmodium falciparum exploits NUAK1 to establish infection in human erythrocytes
The malaria parasite Plasmodium falciparum continues to demonstrate growing drug resistance, raising the need for innovative treatments. Host-directed therapeutics are emerging as a promising approach for many infectious diseases, but knowledge of critical host factors for malaria is limited. P. falciparum is an obligate intracellular parasite of human erythrocytes, suggesting it has evolved to exploit specific host pathways to establish infection. Here, we report that the AMPK-related kinase NUAK1 is a critical host factor for P. falciparum in erythrocytes and has potential as a therapeutic target. We show that NUAK1 is present in human erythrocytes and undergoes increased phosphorylation in P. falciparum-infected cells. Two highly selective NUAK1 inhibitors, HTH-01-015 and WZ4003, inhibited P. falciparum growth throughout its asexual life cycle, including during erythrocyte invasion. Chemoproteomic profiling confirmed the inhibitors' selectivity for human NUAK1. We further show that treatment with the inhibitors reduces phosphorylation of the well-characterized NUAK1 substrate MYPT1 in erythroid cells. Moreover, we find that genetic overexpression of NUAK1 in erythroid cells partially rescues both the signaling and invasion phenotypes elicited by the small molecule inhibitors. These results establish a critical role for the NUAK1 signaling pathway in P. falciparum-infected erythrocytes and highlight its potential as a vulnerable target for host-directed malaria control.
dlvr.it
November 1, 2025 at 9:26 AM
Plasmodium falciparum exploits NUAK1 to establish infection in human erythrocytes bioRxivpreprint
Plasmodium falciparum exploits NUAK1 to establish infection in human erythrocytes
The malaria parasite Plasmodium falciparum continues to demonstrate growing drug resistance, raising the need for innovative treatments. Host-directed therapeutics are emerging as a promising approach for many infectious diseases, but knowledge of critical host factors for malaria is limited. P. falciparum is an obligate intracellular parasite of human erythrocytes, suggesting it has evolved to exploit specific host pathways to establish infection. Here, we report that the AMPK-related kinase NUAK1 is a critical host factor for P. falciparum in erythrocytes and has potential as a therapeutic target. We show that NUAK1 is present in human erythrocytes and undergoes increased phosphorylation in P. falciparum-infected cells. Two highly selective NUAK1 inhibitors, HTH-01-015 and WZ4003, inhibited P. falciparum growth throughout its asexual life cycle, including during erythrocyte invasion. Chemoproteomic profiling confirmed the inhibitors' selectivity for human NUAK1. We further show that treatment with the inhibitors reduces phosphorylation of the well-characterized NUAK1 substrate MYPT1 in erythroid cells. Moreover, we find that genetic overexpression of NUAK1 in erythroid cells partially rescues both the signaling and invasion phenotypes elicited by the small molecule inhibitors. These results establish a critical role for the NUAK1 signaling pathway in P. falciparum-infected erythrocytes and highlight its potential as a vulnerable target for host-directed malaria control.
dlvr.it
October 31, 2025 at 2:25 AM
Feed: "BIOENGINEER.ORG"
By: Bioengineer on Monday, May 18, 2026
Nanoformulated NUAK1 Controls Preeclampsia in Mice
In a significant breakthrough for maternal health, a team of researchers has developed advanced nanoformulations that precisely target the enzyme NUAK1 to regulate the NLRP3 inflammasome, offering
bioengineer.org
May 19, 2026 at 3:25 AM
NUAK1 regulates contraction in vascular smooth muscle cells derived from abdominal aortic aneurysm patients https://www.biorxiv.org/content/10.1101/2024.12.19.629332v1
December 20, 2024 at 4:31 PM
Next, our opus magnum: NUAK1-mediated regulation of neuronal mitochondrial metabolism, co-signed by Marine Lanfranchi and Sozerko Yandiev. A real team effort incl. Géraldine Dilhet, Martijn Kerkhofs, Salma Ellouze, Audrey Garcia & Evelyne Goillot.
doi.org/10.1038/s414...
The AMPK-related kinase NUAK1 controls cortical axons branching by locally modulating mitochondrial metabolic functions - Nature Communications
Mitochondria emerged as essential actors of neural circuits development. Here, the authors uncovered that the AMPK-related kinase NUAK1 controls axonal mitochondrial metabolism through the regulation ...
doi.org
December 30, 2024 at 3:04 PM
Chemical Genetic Screen Identifies PSD3 as a Direct Substrate of NUAK1 that Regulates Dendritic Spine Maturation https://www.biorxiv.org/content/10.64898/2026.04.16.718295v1
April 19, 2026 at 10:15 AM
Plasmodium falciparum exploits NUAK1 to establish infection in human erythrocytes https://www.biorxiv.org/content/10.1101/2025.10.30.685469v1
October 31, 2025 at 2:19 AM
The AMPK-related kinase NUAK1 regulates neuronal morphogenesis through the RNA splicing co-factor SON https://www.biorxiv.org/content/10.1101/2025.10.10.681550v1
October 11, 2025 at 4:15 AM
NUAK1 regulates contraction in vascular smooth muscle cells derived from abdominal aortic aneurysm patients https://www.biorxiv.org/content/10.1101/2024.12.19.629332v1
December 20, 2024 at 4:31 PM
Chemical Genetic Screen Identifies PSD3 as a Direct Substrate of NUAK1 that Regulates Dendritic Spine Maturation https://www.biorxiv.org/content/10.64898/2026.04.16.718295v1
April 19, 2026 at 10:15 AM
Targeting the mevalonate pathway potentiates NUAK1 inhibition-induced immunogenic cell death and antitumor immunity
www.cell.com/cell-reports...
January 16, 2025 at 10:42 PM