» Articles » PMID: 35964329

Diabetes is Accompanied by Changes in the Levels of Proteins Involved in Endosomal GLUT4 Trafficking in Obese Human Skeletal Muscle

Overview
Specialty Endocrinology
Date 2022 Aug 14
PMID 35964329
Authors
Affiliations
Soon will be listed here.
Abstract

Introduction: The regulated delivery of the glucose transporter GLUT4 from intracellular stores to the plasma membrane underpins insulin-stimulated glucose transport. Insulin-stimulated glucose transport is impaired in skeletal muscle of patients with type-2 diabetes, and this may arise because of impaired intracellular trafficking of GLUT4. However, molecular details of any such impairment have not been described. We hypothesized that GLUT4 and/or levels of proteins involved in intracellular GLUT4 trafficking may be impaired in skeletal muscle in type-2 diabetes and tested this in obese individuals without and without type-2 diabetes.

Methods: We recruited 12 participants with type-2 diabetes and 12 control participants. All were overweight or obese with BMI of 25-45 kg/m . Insulin sensitivity was measured using an insulin suppression test (IST), and vastus lateralis biopsies were taken in the fasted state. Cell extracts were immunoblotted to quantify levels of a range of proteins known to be involved in intracellular GLUT4 trafficking.

Results: Obese participants with type-2 diabetes exhibited elevated fasting blood glucose and increased steady state glucose infusion rates in the IST compared with controls. Consistent with this, skeletal muscle from those with type-2 diabetes expressed lower levels of GLUT4 (30%, p = .014). Levels of Syntaxin4, a key protein involved in GLUT4 vesicle fusion with the plasma membrane, were similar between groups. By contrast, we observed reductions in levels of Syntaxin16 (33.7%, p = 0.05), Sortilin (44%, p = .006) and Sorting Nexin-1 (21.5%, p = .039) and -27 (60%, p = .001), key proteins involved in the intracellular sorting of GLUT4, in participants with type-2 diabetes.

Conclusions: We report significant reductions of proteins involved in the endosomal trafficking of GLUT4 in skeletal muscle in obese people with type 2 diabetes compared with age- and weight-matched controls. These abnormalities of intracellular GLUT4 trafficking may contribute to reduced whole body insulin sensitivity.

Citing Articles

Clinicopathologic significance of FUT8, STX4, and calpain2 expression in ovarian cancer.

Yang Y, Wang M, Chen L, Chen X, Wang Y, Ye W Am J Transl Res. 2025; 17(1):144-161.

PMID: 39959200 PMC: 11826196. DOI: 10.62347/SQKL1957.


GLUT4 dispersal at the plasma membrane of adipocytes: a super-resolved journey.

Geiser A, Foylan S, Tinning P, Bryant N, Gould G Biosci Rep. 2023; 43(10).

PMID: 37791639 PMC: 10600063. DOI: 10.1042/BSR20230946.


Phosphorylation of the N-terminus of Syntaxin-16 controls interaction with mVps45 and GLUT4 trafficking in adipocytes.

Bremner S, Berends R, Kaupisch A, Roccisana J, Sutherland C, Bryant N PeerJ. 2023; 11:e15630.

PMID: 37520260 PMC: 10373645. DOI: 10.7717/peerj.15630.


Tankyrase: a promising therapeutic target with pleiotropic action.

Sagathia V, Patel C, Beladiya J, Patel S, Sheth D, Shah G Naunyn Schmiedebergs Arch Pharmacol. 2023; 396(12):3363-3374.

PMID: 37338576 DOI: 10.1007/s00210-023-02576-5.


Insulin signalling and GLUT4 trafficking in insulin resistance.

van Gerwen J, Shun-Shion A, Fazakerley D Biochem Soc Trans. 2023; 51(3):1057-1069.

PMID: 37248992 PMC: 10317183. DOI: 10.1042/BST20221066.


References
1.
Warram J, Martin B, Krolewski A, Soeldner J, Kahn C . Slow glucose removal rate and hyperinsulinemia precede the development of type II diabetes in the offspring of diabetic parents. Ann Intern Med. 1990; 113(12):909-15. DOI: 10.7326/0003-4819-113-12-909. View

2.
Kahn B . Adipose Tissue, Inter-Organ Communication, and the Path to Type 2 Diabetes: The 2016 Banting Medal for Scientific Achievement Lecture. Diabetes. 2018; 68(1):3-14. PMC: 6302542. DOI: 10.2337/dbi18-0035. View

3.
Sylow L, Tokarz V, Richter E, Klip A . The many actions of insulin in skeletal muscle, the paramount tissue determining glycemia. Cell Metab. 2021; 33(4):758-780. DOI: 10.1016/j.cmet.2021.03.020. View

4.
Dohm G, Elton C, Friedman J, Pilch P, Pories W, Atkinson Jr S . Decreased expression of glucose transporter in muscle from insulin-resistant patients. Am J Physiol. 1991; 260(3 Pt 1):E459-63. DOI: 10.1152/ajpendo.1991.260.3.E459. View

5.
Kahn B, Rossetti L, Lodish H, Charron M . Decreased in vivo glucose uptake but normal expression of GLUT1 and GLUT4 in skeletal muscle of diabetic rats. J Clin Invest. 1991; 87(6):2197-206. PMC: 296980. DOI: 10.1172/JCI115254. View