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Determination of insulin sensitivity: methodological considerations.

During the past decade, it became obvious that in contrast to defective insulin secretion in type I diabetes, defective insulin action (insulin resistance) is the most pertinent feature of type II diabetes. In addition, it has been known for a long time that obesity and insulin resistance are closely linked. Recently, hypertension also has been shown to often coincide with insulin resistance, although any causal relationships are still hypothetical. Last, several widely used pharmacological drugs such as diuretics, adrenergic blockers, and angiotensin-converting enzyme inhibitors may influence insulin sensitivity. Therefore, growing interest has emerged to most accurately measure insulin sensitivity. Although considerable knowledge has accumulated as to the actual mechanisms of insulin-dependent glucose transport, the signal transduction pathway of insulin remains poorly understood. When insulin sensitivity is measured, it is the overall glucose uptake that is quantified under controlled conditions. Other actions of insulin, such as the transport of ions, (e.g., sodium and potassium), synthesis of insulin-like growth factor-binding proteins, translocation of transporter proteins, and regulation of enzyme activities, are much more difficult to quantify. Of the many approaches used to quantify insulin action, the euglycemic hyperinsulinemic clamp technique has emerged as the most reliable tool, fulfilling clinical and scientific demands equally. In combination with tracer methodology and calorimetry, a detailed view into the quantitative aspects of insulin action at different target cells is possible. Whether insulin resistance extends to other known actions of insulin in addition to those on glucose metabolism remains open to debate.

Animals↗

Actinomyces serovar WVA963 coaggregation-defective mutant strain PK2407 secretes lactose-sensitive adhesin that binds to coaggregation partner Streptococcus oralis 34.

Actinomyces serovar WVA963 strain PK1259 mediates intergeneric coaggregation with several oral streptococci. These lactose-inhibitable coaggregations appear to involve a 95-kDa putative actinomyces adhesin in complex with type 2 fimbriae. A coaggregation-defective strain PK2407 lacking type 2 fimbriae synthesizes the putative adhesin but appears unable to present it properly on its surface. Antiserum was raised against surface sonicates of PK2407 and was absorbed with a different coaggregation-defective mutant PK3092 that synthesizes type 2 fimbriae but no adhesin. This absorbed antiserum specifically blocked lactose-inhibitable coaggregation of wild-type strain PK1259 and Streptococcus oralis 34 and identified a 95-kDa protein in ammonium sulfate precipitates of culture supernatant of the coaggregation-defective mutant PK2407. The 95-kDa secreted protein was bound to the streptococcal partner cells and to lactose-agarose affinity beads and was released by lactose from both the affinity beads and partner, indicating that the secreted and precipitated protein is biochemically active and may mediate coaggregation with streptococci.

Actinomyces↗

Cells of an internalization-defective familial hypercholesterolemia mutant secrete low density lipoprotein receptors.

Familial hypercholesterolemia (FH) is a congenital disorder of plasma low density lipoprotein (LDL) metabolism resulting from the defect or malfunction of LDL receptors on the cell surface. In most cases of FH, LDL binding to the cell surface is disrupted, while in some special cases LDL binding to the receptors occurs normally but the internalization of the bound LDL is inhibited (internalization-defective type). We studied the biosynthesis and transport of the LDL receptor in cultured fibroblasts obtained from one of the internalization-defective mutants by using [35S]methionine labeling and detection with anti-LDL receptor antibody. The mutant cells synthesized LDL receptors with a molecular weight slightly smaller than normal as shown in SDS-polyacrylamide gel electrophoresis. A large portion of the synthesized receptors was secreted into the medium while the other portion was associated with the cells. The apparent molecular weight of the receptors secreted into the medium was about 10 kDa smaller than that of the cell-associated receptors. The cell-associated form was converted into the secreted form following a prolonged incubation of the cells, showing the precursor-product relationship between the cell-associated and the secreted forms.

Antibodies, Monoclonal↗

Defective growth hormone (GH) secretion and short-term treatment in Noonan syndrome.

Auxological and endocrine data from 12 prepubertal children (3 males, 9 females) with Noonan syndrome (NS) were compared with those of 15 children with constitutional short stature (CSS), 20 children with partial GH deficiency (GHD), and 6 children with Turner syndrome (TS). Four children with NS were treated with human growth hormone (hGH) (n = 4) (25 units/m2 week, divided on daily s.c. doses). In children with NS, the peak serum GH response to clonidine (5.4 +/- 2.7 ug/L) and glucagon (7.4 +/- 3.4 ug/L) were significantly lower than those for children with CSS (14.8 +/- 3.4 and 12.8 +/- 2.8 ug/L respectively). Nine out of the 12 (75%) children with NS did not mount normal GH peak (10 ug/L or more) after provocation. The 12-h integrated GH secretion in the 3 children with NS who had normal GH response to provocation (2.7 +/- 0.7 ug/L) was markedly lower compared to that for children with CSS (6.7 +/- 1.2 ug/L). The serum insulin-like growth factor-1 (IGF-I) concentrations were lower in children with NS (67 +/- 32 ng/ml) vs CSS (165 +/- 35 ng/ml), but not different from those for GHD children (59 +/- 33 ng/ml). In 4 children with NS, hGH therapy for a year increased height growth velocity from 4.1 +/- 0.3 cm/yr to 7.4 +/- 0.6 cm/yr and height standard deviation score (Ht SDS) from -2.2 +/- 0.6 to -1.45 +/- 0.3. This growth acceleration was accompanied by an increase in IGF-I concentration (from 52 +/- 21 ng/ml to 89 +/- 25 ng/ml). In summary, these results prove a defect of the GH secretion in children with NS and suggest that GH therapy has an important role in the management of their short stature.

Child↗

Astrocytes infected with replication-defective adenovirus containing a secreted form of CNTF or NT3 show enhanced support of neuronal populations in vitro.

Neurotrophic factors have been shown to ameliorate neuronal death in several in vitro and in vivo models of neurodegenerative disease. However, delivery of polypeptide growth factors to compromised neurons in the CNS is problematic as the blood-brain barrier prevents systemic delivery, and chronic in-dwelling cannulae are required for intraparenchymal delivery. To circumvent these problems and specifically target neurotrophic factors to the environment surrounding degenerating neurons in the CNS, we have generated replication-defective adenovirus (Ad) vectors that contain a secretable form of ciliary neurotrophic factor (sCNTF) or neurotrophin-3 (NT-3). In this study, we demonstrate that sCNTF/Ad and NT-3/Ad can efficiently infect primary astrocytes, resulting in gene transcription and the production of functional protein. Using Northern blot analysis, dose-dependent expression of sCNTF or NT-3 mRNA was detected 7 days after infection. The levels of mRNA expressed in transgenic astrocytes was dependent on virus titer and increased with increasing virus concentration. sCNTF or NT-3 protein was also detected in astrocyte supernatants by immunoblot analysis and 2-site ELISA. ELISA indicated that astrocytes infected with sCNTF/Ad or NT-3/Ad secreted neurotrophic factors at a rate of approximately 120 pg/10(6) cells/h and 350 pg/10(6) cells/h, respectively. To test for secretion of bioactive sCNTF or NT-3 protein, E8 chick ciliary ganglion or nodose ganglion neurons were grown in medium conditioned by control astrocytes or astrocytes treated with sCNTF/Ad or NT-3/Ad, showing a robust and dose-dependent increase in neuronal survival when compared to control supernatant. In addition, motor neurons plated onto astrocyte monolayers pretreated with sCNTF/Ad showed a two- to fourfold increase in ChAT activity when compared to those grown on astrocytes pretreated with Lac-Z/Ad. This study demonstrates that, using replication-defective adenovirus, primary astrocytes can be efficiently engineered to secrete bioactive sCNTF or NT-3, resulting in enhanced survival of responsive peripheral and central neuronal populations.

Adenoviridae↗

Evidence for defective primary bile acid secretion in children with progressive familial intrahepatic cholestasis (Byler disease).

To clarify the relationship of progressive familial intrahepatic cholestasis (Byler disease) to bile acid metabolism, we analysed, by high performance liquid chromatography, the bile acid composition of serum and bile in seven children with Byler disease and in eight control children with other cholestatic diseases. In serum, total bile acid concentration was increased in patients with Byler disease (0.30 +/- 0.05 mmol/l) and in control patients (0.21 +/- 0.08 mmol/l). Cholate (C) and chenodeoxycholate (CDC) comprised the major proportion of total bile acids in patients with Byler disease as in control patients. Hyocholate (HC) was only detected in patients with Byler disease and lithocholate was only present in control children. In bile, total bile acid concentration was very low in patients with Byler disease (1.1 +/- 1.4 mmol/l) compared to control patients (88.9 +/- 83.2 mmol/l). C and CDC were the major bile acids in control patients, whereas C and HC comprised the major proportion of bile acids in patients with Byler disease. These results suggest the existence of a defect of primary bile acid secretion in Byler disease characterized by the presence of high concentration of bile acids in serum and absence or very low concentration of bile acids in bile.

Bile↗

Identification and functional requirement of Cu(I) and its ligands within coagulation factor VIII.

Coagulation factor VIII (FVIII) is a heterodimer consisting of a light chain of 80 kDa (domains A3-C1-C2) in a metal ion-dependent association with a 220-kDa heavy chain (domains A1-A2-B). The nature of the metal ion-dependent association between the heavy and light chains was investigated using atomic absorption spectroscopy, electron paramagnetic resonance spectroscopy (EPR), and site-directed mutagenesis and expression of the FVIII cDNA. Whereas copper ion was not detected in intact recombinant FVIII, EDTA dissociation of the chains yielded an EPR signal consistent with 1 mol of Cu(I)/mol of active protein, supporting the hypothesis that a single molecule of reduced copper ion is buried within intact FVIII and is released and oxidized upon treatment with EDTA. Cu(I), and not Cu(II), was able to reconstitute FVIII activity from dissociated chains, demonstrating a requirement for Cu(I) in FVIII function. Three potential copper ion binding sites exist within FVIII: one type-2 site and two type-1 sites. The importance of these potential copper ion ligands was tested by studying the effect of site-directed mutants. Of the two histidines that compose the type-2 binding site, the His-1957 --> Ala mutant displayed secretion, light and heavy chain assembly, and activity similar to wild-type FVIII, while mutant His-99 --> Ala was partially defective for secretion and had low levels of heavy and light chain association and activity. In contrast, FVIII having the mutation Cys-310 --> Ser within the type-1 copper binding site in the A1 domain was inactive and partially defective for secretion from the cell, and the heavy and light chains of the secreted protein were not associated. Mutant Cys-2000 --> Ser within the A3 domain displayed secretion, assembly, and activity similar to that for wild-type FVIII. These results support the hypothesis that Cu(I) is buried within the type-1 copper binding site within the A1 domain and is required for FVIII chain association and activity.

Amino Acid Substitution↗

Insulin secretion in growth hormone-deficient children and the effect of the sulfonylurea drug glibenclamide on linear growth.

The effect of glucose on insulin release and the influence of glibenclamide on linear growth were determined in five growth hormone (STH) deficient children who were treated with human growth hormone. It was found that the administration of 5 I.U. of human growth hormone twice a week improved the defective insulin secretion while prolongation of the week improved the defective insulin secretion while prolongation of the interval between growth hormone injections to 7 days had no effect on beta-cell function. The addition of treatment with 5 mg/day glibenclamide to the regular human growth hormone injections resulted in an increased growth rate in four children while one patient developed hypoglycemic symptoms. The results show that STH-deficient children may benefit from combined treatment with human growth hormone plus glibenclamide.

Adolescent↗

Impaired insulin secretion in human diabetes mellitus. Effect of pharmacological activation of gamma-aminobutyric acid system.

To evaluate whether the gamma-aminobutyric acid (GABA)ergic system plays a role in the defective insulin secretion in human diabetes mellitus, 15 non-insulin-dependent diabetics with fasting hyperglycemia above 140 mg/dl were submitted to two consecutive i.v. glucose tolerance tests (IVGTT) (0.33 g/kg b.w.), in basal conditions and after pharmacologic activation of the GABA system with baclofen and sodium valproate. Baclofen, a synthetic analogue, was given to 8 diabetics in two divided doses of 10 mg each 8h and 1h before the post-treatment test; sodium valproate, a drug that increases endogenous GABA activity, was given orally (800 mg) 60 min before the performance of the post-treatment IVGTT. Neither treatment brought about significant changes in insulin, C-peptide, glucagon or growth hormone responses to i.v. glucose nor did they significantly change glucose disappearance rates. These results seem to indicate that GABA does not play a major role in the pathogenesis of defective insulin secretion in non-insulin-dependent diabetes mellitus.

Aged↗

Stimulus specificity of defects in counterregulatory hormone secretion in insulin-dependent diabetes mellitus: effect of glycemic control.

Counterregulatory hormone responses to hypoglycemia are impaired in subjects with insulin-dependent diabetes mellitus (IDDM) in strict glycemic control. To determine whether these defects are specific for hypoglycemia, we examined counterregulatory hormone responses during a 3-h hypoglycemic hyperinsulinemic clamp (14.4 pmol/kg.min) that lowered plasma glucose from 5.0 to 2.2 mmol/L in 9 well controlled IDDM patients (hemoglobin-A1, 7.5 +/- 0.8%), 9 poorly controlled patients (hemoglobin-A1, 12.5 +/- 1.5%), and 10 healthy volunteers. Counterregulatory hormone secretion was compared with responses to non-glucose secretagogues for epinephrine and norepinephrine (cold pressor test), ACTH (overnight metyrapone test), and GH (L-arginine infusion). During hypoglycemia, epinephrine and cortisol responses were lower in the IDDM group in strict glycemic control than those in the poorly controlled IDDM group or healthy volunteers (P < 0.05). In response to the cold pressor test, the areas under the curve for epinephrine and norepinephrine were also reduced in the well controlled IDDM group (P < 0.05 vs. healthy volunteers). The ACTH response to hypoglycemia was not significantly reduced in the well controlled IDDM, whereas the response to metyrapone was actually greater in this group (P < 0.05 vs. poorly controlled IDDM). GH responses to both hypoglycemia and arginine were highest in the well controlled diabetic patients. These data suggest that 1) the reduced epinephrine responses in well controlled IDDM may not be specific for the hypoglycemic stimulus alone, but may also occur in response to other nonhypoglycemic stimuli; 2) cortisol responses to hypoglycemia are reduced in well controlled IDDM, whereas the ACTH response to a non-hypoglycemic stimulus remains intact; and 3) GH responses to both hypoglycemic and nonhypoglycemic stimuli are preserved in well controlled IDDM. The preservation of ACTH and GH responses to metyrapone and arginine, respectively, suggests adequate pituitary functional reserve in IDDM patients in strict glycemic control in response to nonhypoglycemic stimuli.

Adolescent↗

Hematuria in patients with renal hypouricemia.

The characteristics of urate metabolism in renal hypouricemic patients with hematuria were studied to clarify the risk factors for hematuria in patients with renal hypouricemia. In 16 Japanese patients with isolated renal hypouricemia, urate metabolism was measured using the urate clearance study and the subtype of renal hypouricemia [defective presecretory reabsorption (Pre), defective postsecretory reabsorption (Post), enhanced tubular secretion (Secretion) and defective presecretory and postsecretory reabsorption (Pre&Post)] were determined by the pharmacological tests. Hematuria was seen in 7 out of the 16 patients (44%), all of whom were females (58%). Serum urate and urinary urate concentrations were significantly higher in the group with hematuria (Sur = 1.76 +/- 0.31 mg/dl and Uur/Ucr = 0.75 +/- 0.12: p<0.05) than in the group without hematuria (Sur = 1.44 +/- 0.46 mg/dl and Uur/Ucr = 0.56 +/- 0.04), although there was no difference in the urate excretion rate between the two groups. Hematuria was more likely to be accompanied by Post (75%) and Secretion (75%), which showed significantly higher urinary urate concentration (Uur/Ucr = 0.75 +/- 0.1 and 0.69 +/- 0.13, respectively) than by Pre (25%) and Pre&Post (0%), which showed lower urinary urate concentration (0.61 +/- 0.06 and 0.62 +/- 0.05, respectively). The risk factors for hematuria in patients with renal hypouricemia are the elevation of urinary urate concentration and the subtypes of Post and Secretion.

Adult↗

Role of oxidative stress and inflammation in the origin of Type 2 diabetes--a paradigm shift.

In Type 2 diabetes the body either produces too little insulin, or does not respond well to it. Current pharmacological treatments, which are less than optimal, either target defective insulin secretion (sulfonylureas, glinides) or insulin resistance (metformin, thiazolidinediones). Exciting new research is now helping us to understand novel pathways that may contribute to defective insulin secretion as well as decreased response to insulin. Such pathways may explain the development of diabetes and associated complications (atherosclerosis and diabetic nephropathy). Understanding the way a cell metabolises glucose may be the key to understanding how cells secrete insulin and respond to it.

Anti-Inflammatory Agents↗

Disruption of the WFS1 gene in mice causes progressive beta-cell loss and impaired stimulus-secretion coupling in insulin secretion.

Wolfram syndrome, an autosomal recessive disorder characterized by juvenile-onset diabetes mellitus and optic atrophy, is caused by mutations in the WFS1 gene. In order to gain insight into the pathophysiology of this disease, we disrupted the wfs1 gene in mice. The mutant mice developed glucose intolerance or overt diabetes due to insufficient insulin secretion in vivo. Islets isolated from mutant mice exhibited a decrease in insulin secretion in response to glucose. The defective insulin secretion was accompanied by reduced cellular calcium responses to the secretagogue. Immunohistochemical analyses with morphometry and measurement of whole-pancreas insulin content demonstrated progressive beta-cell loss in mutant mice, while the alpha-cell, which barely expresses WFS1 protein, was preserved. Furthermore, isolated islets from mutant mice exhibited increased apoptosis, as assessed by DNA fragment formation, at high concentration of glucose or with exposure to endoplasmic reticulum-stress inducers. These results strongly suggest that WFS1 protein plays an important role in both stimulus-secretion coupling for insulin exocytosis and maintenance of beta-cell mass, deterioration of which leads to impaired glucose homeostasis. These WFS1 mutant mice provide a valuable tool for understanding better the pathophysiology of Wolfram syndrome as well as WFS1 function.

Adenoviridae↗

Modulation of hepatitis B virus secretion by naturally occurring mutations in the S gene.

Alteration in hepatitis B virus (HBV) secretion efficiency may have pathological consequences. Naturally occurring mutations that regulate virion secretion have not been defined. We recently identified HBV genomes displaying high (4B), substantially reduced (3.4), or negative (4C) virion secretion. In the present study, the underlying mutations were mapped. A T552C point mutation in the 4B genome was responsible for its enhanced virion secretion, whereas a G510A mutation in 3.4 and G660C in 4C impaired virus secretion. The three point mutations generate M133T, G119E, and R169P substitutions in the S domains of viral envelope proteins, respectively, without modifying the coding capacity of the overlapping polymerase gene. The mutated residues are predicted to lie in the luminal side of the endoplasmic reticulum (ER) or to be embedded in the ER membrane and thus are not involved in contact with core particles during envelopment. Of the two mutations inhibitory of virion secretion, G510A greatly reduced small envelope protein (hepatitis B surface antigen [HBsAg]) levels both inside cells and in culture medium, whereas G660C specifically abolished HBsAg secretion. Surprisingly, a T484G mutation in the 4B genome, generating an I110M substitution in the S domain, could also reduce HBsAg secretion and block virion secretion. However, its inhibitory effect was suppressed in the 4B genome by the T552C mutation, the enhancer of virion secretion. T552C can also override the inhibitory G510A mutation, but not the G660C mutation. These findings suggest a hierarchy in the regulation of virion secretion and a close link between defective virion secretion and impaired HBsAg formation or secretion.

Amino Acid Sequence↗

Excess urate excretion correlates with severely acidic urine in patients with renal hypouricemia.

We evaluated the renal handling of urate in 12 Japanese renal hypouricemia patients, and studied the relationship between the renal handling of urate and the urinary pH. The patients were classified into the 4 subtypes of renal hypouricemia: (defective presecretory reabsorption (Pre), defective postsecretory reabsorption (Post), enhanced tubular secretion (Secretion), and defective presecretory and postsecretory reabsorption (Pre&Post) as based on a pharmacological test. Seven patients showed acid urine with a urinary pH of less than 5.9, although this was not accompanied by any abnormality of blood pH, partial pressure of carbon dioxide (PaCO2), or blood HCO3-. The urinary pH in the morning significantly correlated with the ratio of urate clearance to creatinine clearance in the morning, whereas the urinary urate concentration in the morning did not correlate with the urinary pH in the morning. In the Pre&Post patients, the urate excretion was higher and the urinary pH was more acidic compared to the other subtypes. The administration of K+-, Na+-citrate significantly alkalized the urinary pH in the patients with renal hypouricemia. These results suggest that the acidic urine was significantly related to the Pre&Post subtype of renal hypouricemia with the higher urate excretion, and that this subtype might be a risk factor for complications in renal hypouricemia. The alkalization of urine might be a useful treatment for the complication of renal hypouricemia.

Adult↗

[Insulin resistance and insulin secretion in type II non-obese diabetics].

BACKGROUND: Glucose tolerance depends essentially on insulin secretion and its action in target tissues. Diabetes mellitus type II (insulin-nondependent diabetes) is a disease conditioned by a dysbalance between insulin secretion and effect; it has not been decided whether the cause is insulin resistance or impaired insulin secretion, although a defect of insulin secretion for the manifestation of the disease is generally accepted. The purpose of the submitted study was to assess to what extent insulin secretion and its effect after an oral glucose load and a hyperglycaemic clamp is affected in different groups of non-obese patients with diabetes type II. METHODS AND RESULTS: The authors examined 21 men with diabetes type II (age 41 +/- 2.6 years, BMI 26.2 +/- 3.2, HbA1,c 9.4 +/- 2.9%) in the course of one year after detection of the disease, treated by diet alone. The second group was formed by 20 patients with diabetes type II (age 46.1 +/- 3.6 years, BMI 26.0 +/- 2.1, HbA1,c 6.94 +/- 1.6%) who suffered from diabetes for 5-10 years and who were treated by diet alone. The third group was formed by 32 diabetics type II (age 51.8 +/- 6.1 years, BMI 26.7 +/- 2.2, HbA1,c 8.7 1.2% +/-) who suffered from diabetes for 5-10 years and were treated with oral antidiabetics. The control group was formed by 42 healthy men matched for body weight and age (age 39.9 years, BMI 25.3, blood sugar level 4.8 mmol/l). Although the diabetic groups did not differ in the fasting blood sugar level (8.0-8.29-8.2 mmol/l), the glycosylated haemoglobin HbA1,c level is lowest in the group of diabetics treated by diet alone, similarly as the rise of the blood sugar level 120 mins, following oral administration of 75 g of glucose (10.3 mmol/l, as compared with 16.2 mmol/l and 15.5 mmol/l in the other groups). The authors found in all groups of diabetic patients, as compared with controls, a comparable drop of the insulin effect evaluated as the metabolic glucose clearance during an hyperinsulinaemic euglycaemic (5 mmol/l) or isoglycaemic (fasting blood sugar level) clamp, the insulin level being 75 microU/ml (controls 10.9 +/- 3.3 ml/kg.min., first group 5.35 +/- 2.7 ml/kg.min., second group 5.47 +/- 2.35 ml/kg.min., third group 5.38 +/- 2.1 ml/kg.min. The differences, as compared with controls, were significant in all groups, p < 0.01). At an insulin level of 1500 microU/ml the results are similar (controls 17.4 +/- 3.8 ml/kg.min., as compared with 13.3 +/- 3.3 in the first group, 13.3 +/- 3.0 in the second group and 12.5 +/- 3.0 ml/kg.min. in the third group: statistical significance in all three groups, as compared with controls, is p < 0.05). The authors did not reveal any differences in the specific insulin bond to insulin receptors of erythrocytes. The total glucose consumption during an isoglycaemic clamp in diabetics and a euglycaemic clamp in controls did not differ. In all diabetic groups, as compared with controls, higher C peptide values and insulin values (IRI) were found on fasting and a slower rise and longer persistence of higher levels after oral glucose administration, although an inadequate secretory response during the hyperglycaemic clamp in diabetics is apparent. Hyperinsulinism was significantly higher in the second group. The number of insulin receptors on erythrocytes, the affinity for insulin, regardless whether the receptors were free or occupied, did not differ significantly between groups. CONCLUSIONS: All investigated groups of type II diabetics had a comparable degree of insulin resistance which did not depend on the duration of diabetes, its compensation or the type of treatment. Although impaired insulin action was proved, the total glucose utilization in relation to hyperglycaemia is not reduced. The differences in the degree of glucose intolerance in the investigated groups of diabetics type II depend on the degree of impairment of insulin secretion.

Body Weight↗

Impaired pancreatic bicarbonate secretion in chronic malnutrition.

Twenty three children with recurrent episodes of diarrhea and chronic malnutrition were studied for pancreatic duct function. Those children were subjected to pancreatic stimulation with pancreozymin and secretin. Grade I malnourished children, as per Gomez classification, formed the control group. The water output from pancreas increased in malnourished children (p < 0.05). It correlated significantly to cationic transport (p < 0.01). Sodium and potassium together accounted for significant proportion of water output in pancreatic fluid. Potassium transport increased with increasing severity of malnutrition and may be responsible for the hypokalemia observed in malnourished children. Pancreatic secretion of bicarbonate decreased in severe malnutrition inspite of increased flow rate of pancreatic secretion. This is probably due to defective bicarbonate secretion likely to be located at pancreatic duct epithelial cell membrane.

Bicarbonates↗

The truA gene of Pseudomonas aeruginosa is required for the expression of type III secretory genes.

Invasive strains of Pseudomonas aeruginosa can cause rapid host cell apoptosis by injecting the type III effector molecule ExoS. A transposon insertional mutant bank of P. aeruginosa was screened to identify P. aeruginosa genes that contribute to the ability of the bacteria to trigger host cell apoptosis. Several isolated mutants had disruptions in the fimV gene. A fimV mutant was unable to induce the expression of exoS, exoT and exsA genes under type III inducing conditions, thus exhibiting a defect in type III protein secretion. Furthermore, this mutant was defective in twitching motility, although type IV pili were present on the bacterial surface. Complementation by a fimV-containing cosmid clone restored both phenotypes to the wild-type levels. However, expression of the type III genes in the fimV mutant was not restored by the introduction of a fimV gene alone, although it restored the twitching motility. A gene downstream of fimV, encoding a tRNA pseudouridine synthase (truA) homologue, was able to complement the type III gene expression defect of the fimV mutant. Thus fimV and truA form an operon and fimV mutation has a polar effect on truA. Indeed, a truA mutant is defective in type III gene expression while its twitching motility is unaffected, and a truA clone is able to complement the type III secretion defect. Pseudouridination of tRNAs is important for tRNA structure, thereby improving the fidelity of protein synthesis and helping to maintain the proper reading frame; thus the results imply that truA controls tRNAs that are critical for the translation of type III genes or their regulators.

ADP Ribose Transferases↗