The facilitated glucose transporters comprise a structurally related family of proteins predicted to have 12 membrane-spanning domains, with the amino terminus, a relatively large middle loop and the carboxy-terminus all oriented towards the cytoplasm. An alternating conformation model has been proposed to explain the mechanism of facilitated glucose transport. To understand the structure-function relationships, especially the role of the intracellular C-terminal domain, we have modified the rabbit equivalent of the erythroid-type transporter, GLUT1 (ref. 18), using complementary DNA to code for a deletion mutant that lacks most (37 out of 42 amino acids) of the intracellular C-terminal domain. This deletion mutant is expressed at the cell surface of Chinese hamster ovary (CHO) cells, but is functionally inactive, probably because it has lost its capacity to alternate in conformation and so is locked into an inward-facing form.
Introduction. Diabetes and its vascular complications are main noncommunicable chronic diseases and major global health issues. Peripheral arterial disease (PAD) is highly prevalent in diabetes with nephropathy. We evaluated the associations of variables of arterial stiffness and the decline in estimated glomerular filtration rate (eGFR) in patients with type 2 diabetes. Materials and Methods. A total of 577 type 2 diabetic patients (mean ± SD: age, 63 ± 11 years) were enrolled. A rapid decline in eGFR was defined as progressively lower eGFR detected at both the 6- and 12-month follow-up visits, plus a reduction in eGFR more than 3 mL·min−1per 1.73 m2 per year. Results. Higher glycated hemoglobin (HbA1c), systolic blood pressure (SBP), pulse pressure (PP), and brachial-ankle pulse wave velocity (ba-PWV) at baseline were independently associated with a rapid decline in eGFR. The adjusted odds ratios (95% confidence intervals) for a rapid decline in eGFR for ba-PWV, SBP, and PP were 1.072 (1.011–1.136), 1.014 (1.004–1.025), and 1.025 (1.008–1.041), respectively, after adjustment for gender, age, body mass index, smoking, HbA1c, and baseline eGFR in separated models. Conclusions. Ba-PWV may serve as a simple and noninvasive predictor of rapid renal function progression in type 2 diabetic patients.
To elucidate the cellular mechanisms of glucose intolerance associated with aging, both the protein and mRNA levels of glucose transporter isoforms were studied in the various tissues of young (7-week-old) and aged (20-month-old) rats. GluT4 (adipose/muscle-type glucose transporter) protein, which is specifically expressed in insulin-responsive tissues, was selectively decreased per milligram of cellular membrane protein in both the epididymal fat tissues and the gastrocnemius muscle of the aged rats compared with the young rats. When the changes in total cellular membranes per gram of tissue are taken into account, a further decrease in GluT4 protein per gram of tissue was observed in the tissues of the aged rats compared with the young rats. The decreased amount of GluT4 protein in the fat tissues of the aged rats is probably due to the decreased protein synthesis rather than the stability, since GluT4 mRNA/micrograms of cellular total RNA was also decreased. In contrast, GluT4 mRNA in the gastrocnemius muscle was rather increased and a ratio of GluT4 protein/GluT4 mRNA was decreased by 70% in the aged rats, suggesting that the translational efficiency and/or stability of GluT4 protein is decreased in the skeletal muscle of the aged rats compared with the young rats. GluT2 (liver-type glucose transporter) protein and mRNA in the liver were also decreased in the aged rats, while no apparent decrease in GluT1 (HepG2/brain-type glucose transporter) protein/mg of cellular membrane protein was observed in the skeletal muscle and fat tissues of the aged rats compared with the young rats.(ABSTRACT TRUNCATED AT 250 WORDS)
Various epidemiological studies have shown that type 2 diabetes and metabolic syndrome are highly correlated with Alzheimer's disease (AD). Here, we sought to assess the impact of metabolic syndrome characteristics on the progression of AD. Five-week-old male, spontaneously hypertensive (n = 32) and Wistar Kyoto (abbreviated WKY; n = 8) rats were divided into 5 groups (each n = 8): WKY, hypertension (HTN), streptozotocin-induced diabetes (STZ), high-fat diet (HFD), and STZ + high-fat diet-induced diabetes mellitus (DM). All animals were sacrificed and samples of the blood, liver, and brain were collected for further biological analysis. During the 15-week period of induction, the STZ and DM groups (animals injected with low-dose STZ) had significantly higher fasting glucose levels; the HFD group had elevated insulin levels, but normal blood glucose levels. The HFD and DM groups had hypercholesterolemia and higher hepatic levels of triglycerides and cholesterol. Additionally, correlations between HFD and elevated brain amyloid-beta 42 (Aβ-42), hyperglycemia and down-regulation of brain insulin receptor, and serum Aβ-42 and hepatic triglyceride concentrations (r(2) = 0.41, p < 0.05) were observed. Serum C-reactive protein and malondialdehyde did not appear to have a significant influence on the association with biomarkers of AD. Thus, our study demonstrated that rats with characteristics of metabolic syndrome had a large number of biomarkers predicting AD; however, no relationship between traditional inflammatory and oxidative markers and AD was found. Further studies are necessary to prove that these findings in rats are relevant to AD processes in humans.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.