scholarly journals Regulation of Megalin membrane traffic by AMP‐activated protein kinase in kidney proximal tubule epithelial cells

2021 ◽  
Vol 35 (S1) ◽  
Author(s):  
Nikol Leshchyshyn ◽  
Laura Orofiamma ◽  
Christian Delos Santos ◽  
Sadia Rahmani ◽  
Costin Antonescu
2010 ◽  
Vol 299 (1) ◽  
pp. F167-F177 ◽  
Author(s):  
Hui Li ◽  
Ramon F. Thali ◽  
Christy Smolak ◽  
Fan Gong ◽  
Rodrigo Alzamora ◽  
...  

The metabolic sensor AMP-activated protein kinase (AMPK) regulates several transport proteins, potentially coupling transport activity to cellular stress and energy levels. The creatine transporter (CRT; SLC6A8) mediates creatine uptake into several cell types, including kidney epithelial cells, where it has been proposed that CRT is important for reclamation of filtered creatine, a process critical for total body creatine homeostasis. Creatine and phosphocreatine provide an intracellular, high-energy phosphate-buffering system essential for maintaining ATP supply in tissues with high energy demands. To test our hypothesis that CRT is regulated by AMPK in the kidney, we examined CRT and AMPK distribution in the kidney and the regulation of CRT by AMPK in cells. By immunofluorescence staining, we detected CRT at the apical pole in a polarized mouse S3 proximal tubule cell line and in native rat kidney proximal tubules, a distribution overlapping with AMPK. Two-electrode voltage-clamp (TEV) measurements of Na+-dependent creatine uptake into CRT-expressing Xenopus laevis oocytes demonstrated that AMPK inhibited CRT via a reduction in its Michaelis-Menten Vmax parameter. [14C]creatine uptake and apical surface biotinylation measurements in polarized S3 cells demonstrated parallel reductions in creatine influx and CRT apical membrane expression after AMPK activation with the AMP-mimetic compound 5-aminoimidazole-4-carboxamide-1-β-d-ribofuranoside. In oocyte TEV experiments, rapamycin and the AMPK activator 5-aminoimidazole-4-carboxamide-1-β-d-ribofuranosyl 5′-monophosphate (ZMP) inhibited CRT currents, but there was no additive inhibition of CRT by ZMP, suggesting that AMPK may inhibit CRT indirectly via the mammalian target of rapamycin pathway. We conclude that AMPK inhibits apical membrane CRT expression in kidney proximal tubule cells, which could be important in reducing cellular energy expenditure and unnecessary creatine reabsorption under conditions of local and whole body metabolic stress.


2021 ◽  
Author(s):  
Rehman Ata

Integrins are cell surface receptors that physically bridge the extracellular matrix to the cytoskeleton and responsible for adhesion, migration, and signaling. Integrin function is intimately controlled by their membrane traffic. For example, integrins are dynamically internalized from the cell posterior and recycled to the cell anterior during cell migration. Misregulation of integrins is intimately linked with cancer progression, including metastasis and cell proliferation and survival. We have recently uncovered that integrin membrane traffic is controlled by AMP-activated protein kinase (AMPK), an energy stress sensing kinase within cells at becomes activated upon energy stress such as by an increase in cell AMP:ATP ratio. I confirmed that AMPK activation resulted in a reduction of cell surface β1-integrin. Using assays that selectively measure integrin exocytosis and endocytosis, I found that AMPK activation regulates β1-integrin recycling and possibly endocytosis. I demonstrated that AMPK regulates Arf6 localization, a key protein which regulates β1-integrin membrane traffic. I confirmed that Arf6 and clathrin are involved in reciprocal regulation, thus highlighting the possible pathway for β1-integrin regulation by AMPK.


2019 ◽  
Vol 32 (4) ◽  
pp. 121
Author(s):  
Daeun Moon ◽  
Sang-Pil Yoon ◽  
Hee-Seong Jang ◽  
Mi Ra Noh ◽  
Ligyeom Ha ◽  
...  

2010 ◽  
Vol 396 (3) ◽  
pp. 656-661 ◽  
Author(s):  
Lisa Miranda ◽  
Sarah Carpentier ◽  
Anna Platek ◽  
Nusrat Hussain ◽  
Marie-Agnès Gueuning ◽  
...  

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