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Updated: Sep 12, 2025

Measurement of Insulin- and Contraction-Stimulated Glucose Uptake in Isolated and Incubated Mature Skeletal Muscle from Mice
Published on: May 16, 2021
P-Rex2 suppresses glucose uptake into liver and skeletal muscle through different adaptor functions
Elpida Tsonou1,2, Julia Y Chu1, Polly A Machin1
1Signalling Programme, The Babraham Institute, Babraham Research Campus, Cambridge, CB22 3AT, UK.
Abstract:
P-Rex2 is a Rac guanine-nucleotide factor (Rac-GEF) that controls glucose homeostasis. This role is thought to be mediated through its adaptor function inhibiting Pten rather than through its Rac-GEF activity, but this remains to be demonstrated. To examine this question, we have investigated the roles of P-Rex2 in glucose homeostasis using Prex2-/- and catalytically-inactive Prex2GD mice. We show that P-Rex2 is required for insulin sensitivity but limits glucose clearance, suppressing glucose uptake into liver and skeletal muscle independently of its catalytic activity. In hepatocytes, P-Rex2 suppresses Glut2 cell surface levels, mitochondrial membrane potential and mitochondrial ATP production. We identify the orphan GPCR Gpr21 as a P-Rex2 target and propose that P-Rex2 limits hepatic glucose clearance by controlling Gpr21 trafficking. In skeletal muscle cells, P-Rex2 suppresses glucose uptake through a separate adaptor function, independently of Gpr21. Additionally, P-Rex2 suppresses insulin secretion by pancreatic islets and plasma insulin levels. Finally, P-Rex2 plays distinct Rac-GEF activity dependent and independent roles in PIP3 production in liver and skeletal muscle, respectively. Together, our study identifies complex roles of P-Rex2 in glucose homeostasis, mediated through largely GEF-activity independent mechanisms which include the GPCR Gpr21 in hepatocytes and but are not obviously linked to the regulation of Pten.
Insights
Protein-tyrosine exchange factor 2 (P-Rex2) regulates glucose homeostasis by suppressing glucose uptake and insulin secretion. Its functions in glucose metabolism are largely independent of its catalytic Rac-guanine nucleotide exchange factor (Rac-GEF) activity.
Area of Science:
- Metabolic regulation
- Molecular endocrinology
- Cellular signaling
Background:
- P-Rex2, a Rac-GEF, is implicated in glucose homeostasis.
- Its role is hypothesized to involve Pten inhibition rather than Rac-GEF activity.
Purpose of the Study:
- To elucidate the precise roles of P-Rex2 in glucose homeostasis.
- To differentiate between P-Rex2's Rac-GEF activity-dependent and -independent functions.
Main Methods:
- Utilized Prex2 knockout (Prex2-/-) and catalytically inactive (Prex2GD) mouse models.
- Investigated glucose uptake, insulin sensitivity, and signaling pathways in liver, skeletal muscle, and pancreatic islets.
Main Results:
- P-Rex2 is essential for insulin sensitivity but impairs glucose clearance.
- It suppresses glucose uptake in liver and muscle via GEF-independent mechanisms, involving Gpr21 in hepatocytes.
- P-Rex2 also reduces insulin secretion and affects PIP3 production distinctly in liver and muscle.
Conclusions:
- P-Rex2 exerts complex, largely GEF-independent control over glucose homeostasis.
- Key mechanisms involve Gpr21 regulation in the liver and distinct pathways in skeletal muscle.
- Findings challenge the primary role of Pten inhibition and highlight novel P-Rex2 functions.
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