» Articles » PMID: 21193401

The Glutamate Agonist Homocysteine Sulfinic Acid Stimulates Glucose Uptake Through the Calcium-dependent AMPK-p38 MAPK-protein Kinase C Zeta Pathway in Skeletal Muscle Cells

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2011 Jan 4
PMID 21193401
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Homocysteine sulfinic acid (HCSA) is a homologue of the amino acid cysteine and a selective metabotropic glutamate receptor (mGluR) agonist. However, the metabolic role of HCSA is poorly understood. In this study, we showed that HCSA and glutamate stimulated glucose uptake in C2C12 mouse myoblast cells and increased AMP-activated protein kinase (AMPK) phosphorylation. RT-PCR and Western blot analysis revealed that C2C12 expresses mGluR5. HCSA transiently increased the intracellular calcium concentration. Although α-methyl-4-carboxyphenylglycine, a metabotropic glutamate receptor antagonist, blocked the action of HCSA in intracellular calcium response and AMPK phosphorylation, 6-cyano-7-nitroquinoxaline-2,3-dione, an AMPA antagonist, did not exhibit such effects. Knockdown of mGluR5 with siRNA blocked HCSA-induced AMPK phosphorylation. Pretreatment of cells with STO-609, a calmodulin-dependent protein kinase kinase (CaMKK) inhibitor, blocked HCSA-induced AMPK phosphorylation, and knockdown of CaMKK blocked HCSA-induced AMPK phosphorylation. In addition, HCSA activated p38 mitogen-activated protein kinase (MAPK). Expression of dominant-negative AMPK suppressed HCSA-mediated phosphorylation of p38 MAPK, and inhibition of AMPK and p38 MAPK blocked HCSA-induced glucose uptake. Phosphorylation of protein kinase C ζ (PKCζ) was also increased by HCSA. Pharmacologic inhibition or knockdown of p38 MAPK blocked HCSA-induced PKCζ phosphorylation, and knockdown of PKCζ suppressed the HCSA-induced increase of cell surface GLUT4. The stimulatory effect of HCSA on cell surface GLUT4 was impaired in FITC-conjugated PKCζ siRNA-transfected cells. Together, the above results suggest that HCSA may have a beneficial role in glucose metabolism in skeletal muscle cells via stimulation of AMPK.

Citing Articles

Extract of Phyllanthus emblica L. fruit stimulates basal glucose uptake and ameliorates palmitate-induced insulin resistance through AMPK activation in C2C12 myotubes.

Li H, Li C, Liu C, Chen S, Liu Y, Lv Q BMC Complement Med Ther. 2024; 24(1):296.

PMID: 39095777 PMC: 11295889. DOI: 10.1186/s12906-024-04592-1.


In vivo glucose metabolism and glutamate levels in mGluR5 knockout mice: a multimodal neuroimaging study using [F]FDG microPET and MRS.

Joo Y, Kim Y, Choi I, Kim H, Son Y, Kim H EJNMMI Res. 2020; 10(1):116.

PMID: 33006705 PMC: 7532251. DOI: 10.1186/s13550-020-00716-z.


p38 MAPK in Glucose Metabolism of Skeletal Muscle: Beneficial or Harmful?.

Bengal E, Aviram S, Hayek T Int J Mol Sci. 2020; 21(18).

PMID: 32899870 PMC: 7555282. DOI: 10.3390/ijms21186480.


Hyperhomocysteinemia, Suppressed Immunity, and Altered Oxidative Metabolism Caused by Pathogenic Microbes in Atherosclerosis and Dementia.

McCully K Front Aging Neurosci. 2017; 9:324.

PMID: 29056905 PMC: 5635055. DOI: 10.3389/fnagi.2017.00324.


A systems study reveals concurrent activation of AMPK and mTOR by amino acids.

Dalle Pezze P, Ruf S, Sonntag A, Langelaar-Makkinje M, Hall P, Heberle A Nat Commun. 2016; 7:13254.

PMID: 27869123 PMC: 5121333. DOI: 10.1038/ncomms13254.


References
1.
Carlton S, Hargett G, Coggeshall R . Localization and activation of glutamate receptors in unmyelinated axons of rat glabrous skin. Neurosci Lett. 1995; 197(1):25-8. DOI: 10.1016/0304-3940(95)11889-5. View

2.
Brunelli G, Spano P, Barlati S, Guarneri B, Barbon A, Bresciani R . Glutamatergic reinnervation through peripheral nerve graft dictates assembly of glutamatergic synapses at rat skeletal muscle. Proc Natl Acad Sci U S A. 2005; 102(24):8752-7. PMC: 1142481. DOI: 10.1073/pnas.0500530102. View

3.
Brakeman P, Lanahan A, OBrien R, Roche K, Barnes C, Huganir R . Homer: a protein that selectively binds metabotropic glutamate receptors. Nature. 1997; 386(6622):284-8. DOI: 10.1038/386284a0. View

4.
Hofmann M, Kohl B, Zumbach M, Borcea V, Bierhaus A, Henkels M . Hyperhomocyst(e)inemia and endothelial dysfunction in IDDM. Diabetes Care. 1997; 20(12):1880-6. DOI: 10.2337/diacare.20.12.1880. View

5.
Joseph A, Antony S, Paulose C . Increased glutamate receptor gene expression in the cerebral cortex of insulin induced hypoglycemic and streptozotocin-induced diabetic rats. Neuroscience. 2008; 156(2):298-304. DOI: 10.1016/j.neuroscience.2008.07.022. View