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ERGIC-53 and traffic in the secretory pathway.

The ER-Golgi intermediate compartment (ERGIC) marker ERGIC-53 is a mannose-specific membrane lectin operating as a cargo receptor for the transport of glycoproteins from the ER to the ERGIC. Lack of functional ERGIC-53 leads to a selective defect in secretion of glycoproteins in cultured cells and to hemophilia in humans. Beyond its interest as a transport receptor, ERGIC-53 is an attractive probe for studying numerous aspects of protein trafficking in the secretory pathway, including traffic routes, mechanisms of anterograde and retrograde traffic, retention of proteins in the ER, and the function of the ERGIC. Understanding these fundamental processes of cell biology will be crucial for the elucidation and treatment of many inherited and acquired diseases, such as cystic fibrosis, Alzheimer's disease and viral infections.

Animals↗

Salivary amylase activity of rats fed a low calcium diet.

Wistar strain rats fed low calcium diets (1, 2, 3, 4, 6 and 8 weeks) exhibited changes in secretory function of whole saliva. In particular, there were changes in salivary flow rate, total salivary protein, amylase enzyme activity, salivary amylase content and the level of cyclic AMP in the parotid gland acinar cell. Although there were no changes for the first 3 weeks, the levels increased at week 4 and decreased at week 6. The wet weight of the parotid gland started to decrease at week 4. These results suggest that when fed low calcium diets for long periods of time, rats develop defective salivary secretion.

Amylases↗

The kinin system mediates hyperalgesia through the inducible bradykinin B1 receptor subtype: evidence in various experimental animal models of type 1 and type 2 diabetic neuropathy.

Both insulin-dependent (type 1) and insulin-independent (type 2) diabetes are complex disorders characterized by symptomatic glucose intolerance due to either defective insulin secretion, insulin action or both. Unchecked hyperglycemia leads to a series of complications among which is painful diabetic neuropathy, for which the kinin system has been implicated. Here, we review and compare the profile of several experimental models of type 1 and 2 diabetes (chemically induced versus gene-prone) and the incidence of diabetic neuropathy upon aging. We discuss the efficacy of selective antagonists of the inducible bradykinin B1 receptor (BKB1-R) subtype against hyperalgesia assessed by various nociceptive tests. In either gene-prone models of type 1 and 2 diabetes, the incidence of hyperalgesia mostly precedes the development of hyperglycemia. The administration of insulin, achieving euglycemia, does not reverse hyperalgesia. Treatment with a selective BKB1-R antagonist does not affect basal nociception in most normal control rats, whereas it induces a significant time- and dose-dependent attenuation of hyperalgesia, or even restores nociceptive responses, in experimental diabetic neuropathy models. Diabetic hyperalgesia is absent in streptozotocin-induced type 1 diabetic BKB1-R knockout mice. Thus, selective antagonism of the inducible BKB1-R subtype may constitute a novel and potential therapeutic approach for the treatment of painful diabetic neuropathy.

Animals↗

Tissue-specific transcription factor HNF4alpha inhibits cell proliferation and induces apoptosis in the pancreatic INS-1 beta-cell line.

Hepatocyte nuclear factor 4alpha (HNF4alpha) is a tissue-specific transcription factor expressed in many cell types, including pancreatic beta-cells. Mutations in the HNF4alpha gene in humans give rise to maturity-onset diabetes of the young (MODY1) characterized by defective insulin secretion by beta-cells. To elucidate the mechanism underlying this disease, we introduced the splice form HNF4alpha2 or HNF4alpha8 into the rat beta-cell line INS-1. Upon tetracycline-induced expression, both HNF4alpha isoforms caused distinct changes in cell morphology and a massive loss of cell numbers that was correlated with reduced proliferation and induced apoptosis. This differential activity was reflected in oligonucleotide microarray analysis that identified more genes affected by HNF4alpha2 compared to HNF4alpha8, and suggests that both isoforms regulate largely the same set of genes, with HNF4alpha2 being a stronger transactivator. We verified the induction of selected transcripts by real-time RT-PCR, including KAI1 and AIF, both known to have apoptotic potential. By establishing cell lines with inducible expression of these target genes, we deduce that both factors are insufficient to induce apoptosis. We propose that the anti-proliferative and apoptotic properties of HNF4alpha may be an essential feature impaired in MODY1 and possibly also in type 2 diabetes.

Animals↗

Cyclic AMP-related and cation-affected human platelet chloride transport regulation.

Cystic fibrosis has been characterized as a defect in the regulation of cyclic AMP-dependent transepithelial chloride transport. The activation of cyclic AMP-dependent protein kinase A by cyclic AMP occurs normally in cystic fibrosis cells, but they fail to transport chloride ions in response to protein kinase A stimulation. Defective chloride secretion and abnormal electrolyte transport occurs in several organs including the lung, sweat glands, intestine and pancreas. The present work was aimed at exploring whether the same or similar regulatory systems are functional in platelets, and if they are altered or deficient in individuals with cystic fibrosis. Chloride transport in platelets from normal subjects and from cystic fibrosis patients was measured by cell sizing techniques where chloride permeability is the limiting factor. In platelets from healthy volunteers, the chloride channel blocker, 5-nitro-2-(3-phenylpropylamino) benzoic acid, inhibits the transport in a dose-dependent manner. The preservation of chloride transport capability is shown to be dependent upon the presence of either Ca2+ or two divalent cation substitutes, Cd2+ or Cu2+. It is also shown that in normal subjects 0.1 mumol/l prostaglandin E1, which elevates cyclic AMP 6 times and abolishes platelet aggregation, significantly enhances the rate constant of the transport. Furthermore, in five out of nine cystic fibrosis patients studied, platelet chloride transport did not respond to stimulation by prostaglandin E1.

Adolescent↗

Genetic defects in GH synthesis and secretion.

Growth hormone (GH) is a multifunctional hormone produced in the anterior pituitary that promotes postnatal growth of skeletal and soft tissues. GH secretion and release are complex phenomena depending on several intrinsic and extrinsic factors modulating the release of two hypothalamic hormones, GH releasing hormone and somatostatin. Any genetic or acquired disorder that impairs GH secretion or action causes a pathological phenotype characterized by harmonic short stature with isolated GH deficiency (IGHD) or combined pituitary hormone deficiency (CPHD). In this article we report current knowledge about the genetic basis of IGHD and CPHD.

Growth Disorders↗

Regulation of human insulin, IGF-I, and multidrug resistance protein 2 promoter activity by hepatocyte nuclear factor (HNF)-1beta and HNF-1alpha and the abnormality of HNF-1beta mutants.

Mutations in hepatocyte nuclear factor-1beta (HNF-1beta) lead to type 5 maturity-onset diabetes of the young (MODY5). Moreover, mutations in the HNF-1beta gene might cause multiorgan abnormalities including renal diseases, genital malformations, and abnormal liver function. The objective of this study was to investigate the molecular mechanism of diabetes mellitus, intrauterine growth retardation, and cholestasis observed in MODY5 patients. We analyzed the transactivity of wild-type and three mutant HNF-1beta on native human insulin, IGF-I, and multidrug resistance protein 2 (MRP2) promoters in combination with HNF-1alpha, using a reporter-assay system in transiently transfected mammalian cells. In the human insulin gene promoter, we found that the cooperation of HNF-1alpha and HNF-1beta is prominent. Absence of this cooperation was observed in all of the HNF-1beta mutants. In the human IGF-I and MRP2 promoters, we found that the HNF-1beta His153Asn (H153N) mutant had a mutant-specific repressive effect on both HNF-1alpha and wild-type HNF-1beta transactivity. Absence of the cooperation of HNF-1beta mutants with HNF-1alpha in the human insulin gene promoter might be one cause of defective insulin secretion. The H153N mutant-specific repression of HNF-1alpha and HNF-1beta transactivity in human IGF-I and MRP2 promoters might explain the case-specific clinical features of growth retardation and cholestasis observed only in early infancy. We found differential property of HNF-1alpha/HNF-1beta activity and the effect of HNF-1beta mutants by the promoters. We consider that analyses of HNF-1beta mutants on the intended human native promoters in combination with HNF-1alpha may be useful in investigating the molecular mechanisms of the various features in MODY5.

ATP Binding Cassette Transporter, Subfamily B↗

Interactions between Caenorhabditis elegans individuals during chemotactic response.

The chemotactic response of the nematode Caenorhabditis elegans is known to be affected by the population density on an assay plate, suggesting the existence of interactions between individual animals. To clarify the interactions between individuals during chemotaxis, we investigated the effect of population density at an attractant area on the chemotactic response to water-soluble sodium acetate and odorant diacetyl using wild-type N2 animals and daf-22 (m130) mutants, which have defective pheromone secretion but can sense pheromone. The chemotaxis index of N2 animals at 90 min of the assay negatively correlated with the number of animals on the assay plate regardless of the type of attractant used (p<0.01). On the other hand, there was no significant difference in the chemotaxis indices of daf-22 (m130) mutants for either of the attractants between the low-and high-population groups. When daf-22 (m130) mutants of a high population density were placed at the attractant location in advance, the chemotaxis index of N2 animals was almost the same as that in the control assay in which no animals were placed at the attractant location in advance. When N2 animals of a high population density were placed at the attractant location in advance, the chemotaxis indices of N2 animals and daf-22 (m130) mutants were significantly smaller than those obtained in the control assay (p<0.05). In the absence of an attractant, we observed a decline in the fraction of animals in the neighborhood of N2 animals of a high population density, although the nematodes were not influenced by daf-22 (m130) mutants of a high population density. These results suggest that the attraction of nematodes to chemicals is inhibited by an increase in the concentration of the pheromone generated by N2 animals at the attractant location.

Animals↗

Current management strategies for coexisting diabetes mellitus and obesity.

Besides genetic predisposition, obesity is the most important risk factor for the development of diabetes mellitus. Weight reduction has been shown to markedly improve blood glucose control and vascular risk factors associated with insulin resistance in obese individuals with type 2 diabetes. Therapeutic strategies for the obese diabetic patient include: (i) promoting weight loss, through lifestyle modifications (low-calorie diet and exercise) and antiobesity drugs (orlistat, sibutramine, etc.); (ii) improving blood glucose control, through agents decreasing insulin resistance (metformin or thiazolidinediones, e.g. pioglitazone and rosiglitazone) or insulin needs (alpha-glucosidase inhibitors, e.g. acarbose) in preference to agents stimulating defective insulin secretion (sulphonylureas, meglitinide analogues); and (iii) treating common associated risk factors, such as arterial hypertension and dyslipidaemias, to improve cardiovascular prognosis. Whenever insulin is required by the obese diabetic patient after failure to respond to oral drugs, it should be preferably prescribed in combination with an oral agent, more particularly metformin or acarbose, or possibly a thiazolidinedione. When morbid obesity is present, both restoring a good glycaemic control and correcting associated risk factors can only be obtained through a marked and sustained weight loss. This objective justifies more aggressive weight reduction programmes, including very-low-calorie diets and bariatric surgery, but only within a multidisciplinary approach and long-term strategy.

Diabetes Mellitus↗

Pathogenesis of pre-diabetes: mechanisms of fasting and postprandial hyperglycemia in people with impaired fasting glucose and/or impaired glucose tolerance.

Thirty-two subjects with impaired fasting glucose (IFG) and 28 subjects with normal fasting glucose (NFG) ingested a labeled meal and 75 g glucose (oral glucose tolerance test) on separate occasions. Fasting glucose, insulin, and C-peptide were higher (P < 0.05) in subjects with IFG than in those with NFG, whereas endogenous glucose production (EGP) did not differ, indicating hepatic insulin resistance. EGP was promptly suppressed, and meal glucose appearance comparably increased following meal ingestion in both groups. In contrast, glucose disappearance (R(d)) immediately after meal ingestion was lower (P < 0.001) in subjects with IFG/impaired glucose tolerance (IGT) and IFG/diabetes but did not differ in subjects with IFG/normal glucose tolerance (NGT) or NFG/NGT. Net insulin action (S(i)) and insulin-stimulated glucose disposal (S(i)*) were reduced (P < 0.001, ANOVA) in subjects with NFG/IGT, IFG/IGT, and IFG/diabetes but did not differ in subjects with NFG/NGT or IFG/NGT. Defective insulin secretion also contributed to lower postprandial R(d) since disposition indexes were lower (P < 0.001, ANOVA) in subjects with NFG/IGT, IFG/IGT, and IFG/diabetes but did not differ in subjects with NFG/NGT and IFG/NGT. We conclude that postprandial hyperglycemia in individuals with early diabetes is due to lower rates of glucose disappearance rather than increased meal appearance or impaired suppression of EGP, regardless of their fasting glucose. In contrast, insulin secretion, action, and the pattern of postprandial turnover are essentially normal in individuals with isolated IFG.

Blood Glucose↗

Maturity-onset diabetes of the young caused by a balanced translocation where the 20q12 break point results in disruption upstream of the coding region of hepatocyte nuclear factor-4alpha (HNF4A) gene.

Monogenic human disorders have been used as paradigms for complex genetic disease and as tools for establishing important insights into mechanisms of gene regulation and transcriptional control. Maturity-onset diabetes of the young (MODY) is a monogenic dominantly inherited form of diabetes that is characterized by defective insulin secretion from the pancreatic beta-cells. A wide variety of mutation types in five different genes have been identified that result in this condition. There have been no reports of a chromosome deletion or translocation resulting in MODY. We report a pedigree where MODY cosegregates with a balanced translocation [karyotype 46, XX t(3;20) (p21.2;q12)]. The chromosome 20 break point, 20q12, is within the region of one of the known MODY genes, hepatocyte nuclear factor-4alpha (HNF4A). Fluorescence in situ hybridization analysis demonstrated that the break point does not disrupt the coding region of this gene, but it lies at least 6 kb upstream of the conventional promoter (P1). We propose that this mutation disrupts the spatial relationship between the recently described alternate distal pancreatic promoter (P2) and HNF4A. This is the first case of MODY due to a balanced translocation, and it provides evidence to confirm the crucial role of an upstream regulator of HNF4A gene expression in the beta-cell.

Adolescent↗

A protective role for heme oxygenase-1 in INS-1 cells and rat islets that are exposed to high glucose conditions.

Heme oxygenase-1 (HO-1) has been described as an inducible protein that is capable of cytoprotection via radical scavenging and the prevention of apoptosis. Chronic exposure to hyperglycemia can lead to cellular dysfunction that may become irreversible over time, and this process has been termed glucose toxicity. Yet little is known about the relation between glucose toxicity and HO-1 in the islets. The purposes of the present study were to determine whether prolonged exposure of pancreatic islets to a supraphysiologic glucose concentration disrupts the intracellular balance between reactive oxygen species (ROS) and HO-1, and so this causes defective insulin secretion; we also wanted to evaluate a protective role for HO-1 in pancreatic islets against high glucose levels. The intracellular peroxide levels of the pancreatic islets (INS-1 cell, rat islet) were increased in the high glucose media (30 mM glucose or 50 mM ribose). The HO-1 expression was induced in the INS-1 cells by the high glucose levels. Both the HO-1 expression and glucose stimulated insulin secretion (GSIS) was decreased simultaneously in the islets by treatment of the HO-1 antisense. The HO-1 was upregulated in the INS-1 cells by hemin, an inducer of HO-1. And, HO-1 upregulation induced by hemin reversed the GSIS in the islets at a high glucose condition. These results suggest HO-1 seems to mediate the protective response of pancreatic islets against the oxidative stress that is due to high glucose conditions.

Animals↗

Repertoire shift in the humoral response to phosphocholine-keyhole limpet hemocyanin: VH somatic mutation in germinal center B cells impairs T15 Ig function.

Phosphocholine (PC) is a naturally occurring Ag common to many pathogenic microorganisms. Early in the primary response to PC conjugated to keyhole limpet hemocyanin (KLH), T15 Id(+) Abs constitute >90% of the serum Ig in BALB/c mice. During the late primary and memory response to PC-protein, a shift in the repertoire occurs and T15 Id(+) Abs lose dominance. In this study, we use immunohistochemistry and single germinal center microdissection to locate T15 Id(+) cells in the spleen in a primary response to PC-KLH. We demonstrate T15 Id(+) B cells and V(H)1-DFL16.1-JH1 and V kappa 22-J kappa 5 rearrangements in germinal centers early in the immune response; thus loss of T15 dominance is not due to lack of T15 cells within germinal centers. One-hundred thirty one V(H)1 and 57 V kappa 22 rearrangements were cloned and sequenced. Thirty four percent of the V(H)1 clones and 37% of the V kappa 22 clones contained somatic mutations indicating participation in the germinal center response. Six variant T15 H clones were expressed with wild-type T15 L chain in vitro. Two of these Abs were defective in secretion providing the first evidence that mutation occurring in vivo can disrupt Ig assembly and secretion. Of the four secretion-competent Abs, two failed to display binding to PC-protein, while the other two displayed altered carrier recognition. These results indicate that somatic mutation of T15 in vivo can result in the loss of binding and secretion, potentially leading to B cell wastage. The failure of T15 to gain affinity enhancing mutations in the face of these detrimental changes may contribute to repertoire shift.

Amino Acid Sequence↗

Glucose counterregulatory hormones in the 72-hour fast.

OBJECTIVE: To attempt to establish a reference range of glucagon concentrations during hypoglycemia. METHODS: We measured glucagon, cortisol, and growth hormone responses in 65 patients with insulinoma and 29 normal control subjects who underwent a 72-hour fast. For comparison, we also assessed these responses in eight patients with noninsulinoma pancreatogenous hypoglycemia syndrome. RESULTS: At the end of the fasts, median serum cortisol (19.0 mg/dL [range, 3.7 to 44.0] versus 11.0 mg/dL [range, 5.0 to 28.0], respectively; P<0.001) and growth hormone levels (3.5 ng/mL [range, 0.1 to 46.0] versus 1.2 ng/mL [range, 0.1 to 34.0], respectively; P = 0.021) were higher, whereas plasma glucagon (54.5 pg/mL [range, 11.0 to 170.0] versus 75.0 pg/mL [range, 17.0 to 940.0], respectively; P = 0.012) was lower in patients with insulinoma (serum glucose level, 39 mg/dL [range, 14 to 58]) than in control subjects (serum glucose level, 63 mg/dL [range, 47 to 89]). In contrast, the 8 patients with noninsulinoma pancreatogenous hypoglycemia syndrome, a disorder of postprandial hyperinsulinemic hypoglycemia with normal findings on a 72-hour fast (serum glucose level, 71.5 mg/dL [range, 48 to 82]), had concentrations of glucagon (81.0 pg/mL [range, 47.0 to 150.0]), cortisol (10.5 mg/dL [range, 2.7 to 17.0]), and growth hormone (1.5 ng/mL [range, 0.8 to 6.9]) similar to those in the control subjects. On multivariate analysis, the duration of the fast, baseline glucagon concentration, and male gender (but not age, body mass index, or concentrations of glucose and insulin) were correlated with end-of-fast glucagon concentration. CONCLUSION: Defective glucagon secretion in hypoglycemic disorders applies to the stimulus of hypoglycemia but not to food deprivation. A conservative estimate for glucagon deficiency based on the minimal observed glucagon response could be a level of 10 pg/mL during hypoglycemia.

Adult↗

[Mechanisms of action of repaglinide at a cellular level].

In type 2 diabetic patients, the important post-prandial hyperglycemic peak combined with the defective insulin secretion emphasizes the need for restoring a physiological insulin profile during meals, characterized by insulinemia peaking within 1 hour and returning to basal levels within 4 hours. During type 1 diabetes mellitus, short acting insulin analogs aim at counteracting on post-prandial hyperglycemic peak. During type 2 diabetes mellitus, repaglinide is the first fast-acting oral antidiabetic drug able to stimulate endogenous insulin secretion during meal by mimicking physiological insulin secretion pattern.

Carbamates↗

[Clinical importance and pathogenic mechanisms of insulin resistance in chronic renal insufficiency (part I): insulin resistance in patients with chronic renal insufficiency].

INTRODUCTION: This paper presents new investigations of abnormal insulin action in patients with chronic renal failure. Reduced tissue sensitivity to insulin action and the effects of the impairments on carbohydrate, protein and lipid metabolism have important pathophysiological implications in the genesis of the uremic syndrome. We analyzed confounding factors of reduced insulin sensitivity and potential sites of insulin resistance. INSULIN RESISTANCE IN HUMANS: Insulin resistance is associated with a number of metabolic and vascular abnormalities known as "syndrome X" or metabolic syndrome. Other features include obesity, particularly truncal distribution, glucose intolerance and non-insulin-dependent diabetes mellitus (NIDDM), hypertension, a specific dyslipidemia with raised triglyceride concentrations and a high low-density lipoprotein: high-density lipoprotein ratio, and hyperuricemia. These features, are all associated with accelerated atherogenesis and cardiovascular disease, the main cause of premature mortality. Some genetic (mutations affecting postreceptor signalling pathways) and environmental factors that could contribute to insulin resistance are discussed. INSULIN RESISTANCE IN CHRONIC RENAL FAILURE: The most prominent metabolic disturbance in uremic patients is insulin resistance due to a post-receptor defect. Insulin secretion is also impared, because the pancreatic beta-cell response to hyperglycemia is blunted. Insulin clearance by renal and extrarenal mechanisms is reduced. POSSIBLE SITES OF INSULIN RESISTANCE IN TERMINAL RENAL FAILURE: Increase in hepatic glucose production or impaired hepatic glucose uptake were overestimated. Impaired glucose uptake by peripheral tissues, primarily muscle and adipose tissue, has been extensively studied, and there is abundant evidence in patients with chronic renal failure. Decrease in renal glucose production would lead to a decrease in glucose appearance in circulation and decrease of insulin sensitivity. CONCLUSION: Cellular basis for insulin resistance in uremic patients is, however, unknown. It is now recognized that insulin-stimulated glucose transport in skeletal muscles and in other peripheral tissues is reduced. Although the majority of uremic patients are insulin resistant and about half of them are glucose intolerant, they are rarely diabetics. But, there are clinical implications of abnormal insulin metabolism in uremia. Cardiovascular complications are the most important consequences and significant cause of mortality in these patients.

Humans↗

CD28 costimulatory molecule--expression, structure and function.

T cell activation is a key event in triggering an antigen specific immune response of the organism. The process is induced primarily by the signal generated by direct interaction of a T cell receptor with an antigen bound to the major histocompatibile complex on an antigen-presenting cell (APC). Although the signal is critical in exciting immune response, an additional, costimulating signal is required. The major second signal is generated by interaction of the CD28 molecule expressed on most T lymphocytes with its natural ligands CD80 and CD86 located on APCs. The signal excited by CD28 triggering involves multiple second-messenger cascades, leading to the activation of transcription factors and finally results in cell proliferation, cytokine production, and the generation of effector functions. The importance of CD28-delivered costimulatory signals was proven in experiments with CD28-deficient mice. T cells from these mice exhibited an impaired pattern of cytokine secretion and defects in T cell-dependent antibody production. Certain forms of immunopathology might result from the aberrant regulation of CD28 expression.

Adaptor Proteins, Signal Transducing↗