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O Olsen

Publications and source records attributed to O Olsen.

At least 55 records · Page 3Linked to original sources

Solution structure and backbone dynamics of the human alpha3-chain type VI collagen C-terminal Kunitz domain,.

The solution structure and backbone dynamics of the 58-residue C-terminal Kunitz domain fragment [alpha3(VI)] of human alpha3-chain type VI collagen has been studied by two-dimensional 1H-1H and 1H-15N nuclear magnetic resonance spectroscopy at 303 K. The solution structure is represented by an ensemble of 20 structures calculated with X-PLOR using 612 distance and 47 dihedral angle restraints. The distance restraints were obtained by a complete relaxation matrix analysis using MARDIGRAS. The root mean squared (rms) deviation is 0.91 A for the backbone atoms of the residues Thr2(8)-Gly12(18), Arg15(21)-Tyr35(41), and Gly40(46)-Pro57(63). The central beta-sheet [residues Ile18(24)-Tyr35(41)] and the C-terminal alpha-helix [residues Gln48(54)-Cys55(61)] are better defined with a backbone rms deviation of 0.46 A. The solution structure of alpha3(VI) is virtually identical to the crystal structure of alpha3(VI) and to the solution structure of bovine pancreatic trypsin inhibitor (BPTI). The 15N spin-lattice and spin-spin relaxation rates and the 1H-15N heteronuclear nuclear Overhauser enhancement (NOE) were analyzed using both the "model-free" formalism [Lipari, G., & Szabo, A. (1982) J. Am. Chem. Soc. 104, 4546-4559 and 4559-4570] and the reduced spectral density mapping procedure [Farrow, N. A., Szabo, A., Torchia, D. A., & Kay, L. E. (1995) J. Biomol.NMR 6, 153-162]. The results obtained from the "model-free" analysis include an overall correlation time tauc of 3. 00 ns and backbone order parameters S2 in the range from 0.28 to 0. 93. The necessity of including an exchange term in the analysis of the relaxation data from 14 residues indicated that these residues are involved in motions on the micro- to millisecond time scale. The majority of the 14 residues are located in the vicinity of the Cys14(20)-Cys38(44) disulfide bond, suggesting the presence of a disulfide bond isomerization similar to the one observed in BPTI [Otting, G., Liepinsh, E., & Wüthrich, K. (1993) Biochemistry 32, 3571-3582]. It is suggested that this disulfide bond isomerization is the main reason for the surprisingly small effect on trypsin inhibition observed when Thr13(19) of alpha3(VI) is substituted with Pro.

Amino Acid Sequence↗

Gastric lipase secretion after sham feeding and cholinergic blockade.

Our purpose was to examine gastric lipase secretion after cephalic stimulation (sham feeding) and to examine the effect of cholinergic blockade. Eight healthy volunteers, four women and four men, age 21-58 years, were studied twice on separate days. They were sham fed with and without infusion of atropine. Gastric content was measured and the amount as well as the activity of gastric lipase output were determined. Plasma concentrations of gastrin, secretin, and cholecystokinin (CCK) were measured simultaneously by radioimmunoassays. Cephalic stimuli can evoke human gastric lipase secretion, and this effect was almost ablated by atropine blockade of cholinergic receptors. The concentrations of CCK and secretin in plasma were unaffected by sham feeding with or without atropine blockade, whereas gastrin was stimulated by sham feeding after atropine blockade. Gastric lipase secretion in man is apparently controlled by interacting vagal and hormonal mechanisms.

Adult↗

Meta-analysis of the safety of home birth.

BACKGROUND: The safety of planned home birth is controversial. This study examined the safety of planned home birth backed up by a modern hospital system compared with planned hospital birth in the Western world. METHODS: A meta-analysis of six controlled observational studies was conducted, and the perinatal outcomes of 24,092 selected and primarily low-risk pregnant women were analyzed to measure mortality and morbidity, including Apgar scores, maternal lacerations, and intervention rates. Confounding was controlled through restriction, matching, or in the statistical analysis. RESULTS: Perinatal mortality was not significantly different in the two groups (OR = 0.87, 95% Ci 0.54-1.41). The principal difference in the outcome was a lower frequency of low Apgar scores (OR = 0.55; 0.41-0.74) and severe lacerations (OR = 0.67; 0.54-0.83) in the home birth group. Fewer medical interventions occurred in the home birth group: induction (statistically significant ORs in the range 0.06-0.39), augmentation (0.26-0.69), episiotomy (0.02-0.39), operative vaginal birth (0.03-0.42), and cesarean section (0.05-0.31). No maternal deaths occurred in the studies. Some differences may be partly due to bias. The findings regarding morbidity are supported by randomized clinical trials of elements of birth care relevant for home birth, however, and the finding relating to mortality is supported by large register studies comparing hospital settings of different levels of care. CONCLUSION: Home birth is an acceptable alternative to hospital confinement for selected pregnant women, and leads to reduced medical interventions.

Female↗

Importance of vagus nerves in duodenal acid neutralization in anesthetized pigs.

During the cephalic phase of gastric acid secretion, vagally mediated synchronous stimulation of bicarbonate provides protection against the acid. The purpose of this study was to determine simultaneously the effect of electrical vagal stimulation (EVS) on pancreatic, hepatic, and duodenal mucosal bicarbonate secretion, thereby estimating their relative importance in vagally induced duodenal acid neutralization. Splanchnicotomy increased vagally induced pancreaticobiliary bicarbonate secretion, whereas duodenal mucosal bicarbonate secretion was unchanged. After splanchnicotomy, EVS (10 ms, 15 mA, 12 Hz) significantly increased pancreatic bicarbonate secretion (0-4.17 mmol/h), hepatic bicarbonate secretion (0.16 to 0.22 mmol/h), and duodenal mucosal bicarbonate secretion (0.17 to 0.31 mmol/h). Pancreaticobiliary bicarbonate secretion was atropine resistant, whereas vagally induced duodenal mucosal bicarbonate secretion was diminished by atropine (2.0 mg/kg). After splanchnicotomy, EVS (10 ms, 15 mA, 12 Hz) had no effect on portal plasma concentration of secretin, whereas vasoactive intestinal peptide was increased (14-29 pM). EVS at 12 Hz with varying duration (3 or 10 ms) and amplitude (3-50 mA) had no further effect on the bicarbonate secretion from the three organs. In addition, biliary [14C]mannitol clearance was shown not to be a reliable marker of canalicular bile secretion in pigs. These results suggest that in the anesthetized pig 1) vagal stimulation is only of minor importance to hepatic bicarbonate secretion; 2) vagal stimulation activates pancreatic bicarbonate secretion through both cholinergic muscarinic and noncholinergic transmission; and 3) vagal stimulation induces duodenal mucosal bicarbonate secretion mainly through cholinergic muscarinic transmission. In conclusion, these results suggest that only pancreatic and duodenal bicarbonate production play a role in vagally induced duodenal acid neutralization.

Acid-Base Equilibrium↗

Deficient gastric lipase secretion in pancreatic insufficiency.

BACKGROUND: Gastrin is an important stimulator of gastric lipase secretion in man. In advanced pancreatic insufficiency gastric lipases might compensate for the lack of pancreatic lipases, but the role of gastrin in such compensation remains to be evaluated. The aim of this study was to examine the effect of gastrin on the gastric lipase secretion in patients with pancreatic insufficiency. METHODS: Eight patients with pancreatic insufficiency secondary to alcohol abuse were studied, and six healthy subjects volunteered as controls for the study. All volunteers received identical doses of intravenous gastrin-17 (10, 30, and 60 pmol/kg/h). The gastric content was measured, using a nasogastric tube for aspiration, and the amount and activity of gastric lipase output were determined. Plasma concentrations of gastrin, secretin, and cholecystokinin were measured by radioimmunoassays. RESULTS: The increased plasma levels of gastrin were accompanied by a dose-dependent increase in the amount and activity of gastric lipase in controls, but in the patients the response was almost abolished. CONCLUSIONS: Gastrin in postprandial concentrations does not influence the secretion of gastric lipase in patients with pancreatic insufficiency due to chronic pancreatitis.

Adult↗

Feedback regulation of pancreatic exocrine secretion in minipigs.

BACKGROUND: The mechanism behind the possible feedback regulation of pancreatic exocrine secretion is not well understood. METHODS: Thirteen minipigs were prepared with fistulas to the pancreatic duct and the duodenum. Peripheral venous blood was obtained for determination of secretin and cholecystokinin (CCK) levels. Four different experiments were performed: 1) diversion and reinfusion of pancreatic juice; 2) intraduodenal infusion of NaHCO3 solution, with the same volume, bicarbonate concentration, and osmolality as the collected pancreatic secretion, and reinfusion of pancreatic juice; 3) reinfusion of pancreatic secretion for 1 h before and 2 h after a meal; and 4) diversion of pancreatic secretion and intraduodenal infusion of NaHCO33 solutions before and after a meal. RESULTS: Reinfusing pancreatic juice significantly decreased pancreatic juice volume and bicarbonate output and slightly decreased the level of secretin in plasma. Alternating infusions of substitute NaHCO3 and pancreatic juice did not change pancreatic output of bicarbonate and protein, nor did it change the CCK and secretin levels in plasma. Replacing pancreatic juice with intraduodenal NaHCO3 infusions during a meal did not significantly modify the pancreatic secretion of bicarbonate and protein or the hormonal levels in blood. CONCLUSIONS: A negative feedback regulation of pancreatic exocrine secretion is present in starved minipigs. Duodenal acidity and plasma levels of secretin semm to be of importance, whereas duodenal enzyme activity and the level of CCK in plasma probably are not. A postprandial negative feedback regulation through duodenal enzymatic activity and release of CCK into blood could not be shown.

Animals↗

Transgenic barley expressing a protein-engineered, thermostable (1,3-1,4)-beta-glucanase during germination.

The codon usage of a hybrid bacterial gene encoding a thermostable (1,3-1,4)-beta-glucanase was modified to match that of the barley (1,3-1,4)-beta-glucanase isoenzyme EII gene. Both the modified and unmodified bacterial genes were fused to a DNA segment encoding the barley high-pI alpha-amylase signal peptide downstream of the barley (1,3-1,4)-beta-glucanase isoenzyme EII gene promoter. When introduced into barley aleurone protoplasts, the bacterial gene with adapted codon usage directed synthesis of heat stable (1,3-1,4)-beta-glucanase, whereas activity of the heterologous enzyme was not detectable when protoplasts were transfected with the unmodified gene. In a different expression plasmid, the codon modified bacterial gene was cloned downstream of the barley high-pI alpha-amylase gene promoter and signal peptide coding region. This expression cassette was introduced into immature barley embryos together with plasmids carrying the bar and the uidA genes. Green, fertile plants were regenerated and approximately 75% of grains harvested from primary transformants synthesized thermostable (1,3-1,4)-beta-glucanase during germination. All three trans genes were detected in 17 progenies from a homozygous T1 plant.

Amino Acid Sequence↗

Elucidation of the origin of multiple conformations of the human alpha 3-chain type VI collagen C-terminal Kunitz domain: the reorientation of the Trp21 ring.

The human alpha 3-chain type VI collagen C-terminal Kunitz domain fragment (alpha 3(VI)) has been studied by two dimensional 1H-1H and 1H-13C NMR spectroscopy at 303 K. It is shown that the secondary structure of the protein is strikingly similar to that of BPTI, and a number of unusual H alpha chemical shifts, which are highly conserved in Kunitz-domain proteins, are also observed for a alpha 3(VI). Furthermore, a series of exchange cross peaks observed in 1H-1H spectra shows that a large number of protons in the central beta-sheet exist in two different chemical environments, corresponding to two unequally populated conformations that are slowly exchanging on the NMR time scale. Several protons, including Ser47(53) H alpha, Arg32(28) H(gamma 1) and H(gamma 2), and GLN48(54) H(beta 2), all located in the vicinity of the Trp21(27) ring in the crystal structure of alpha 3(VI) [Arnoux, B. et al. (1995) J. Mol. Biol., 246, 609-617], have very different chemical shifts in the two conformations, the most affected being Gln48(54) H(beta 2) (delta sigma = 3 ppm), which is placed directly above the Trp21(27) ring in the crystal structure of alpha 3(VI). It should be concluded that the origin of the multiple conformations of the central beta-sheet is a reorientation of the Trp21(27) ring. From the intensities of corresponding signals in the two conformations, the populations, the population of the minor conformation was found to be 6.4 +/- 0.2% of that of the major conformation, while a rate constant kM = 1.01 +/- 0.05 s-1 for the major to minor interconversion was obtained from a series of NOESY spectra with different mixing times. In addition, it is shown that Cys14(20)-Cys38(44) disulfide bond isomerization, previously observed in BPTI [Otting, G. et al. (1993) Biochemistry, 32, 3571-3582], is also likely to occur in alpha 3(VI).

Amino Acid Sequence↗

Transplanting two unique beta-glucanase catalytic activities into one multienzyme, which forms glucose.

Endo cellulases of plant pathogenic erwinias degrade cellulose as well as the cellulosic domains of barley (1-3,1-4)-beta-glucan. Depolymerization of the latter substrate is mainly caused by (1-3,1-4)-beta-glucanases, which hydrolyze (1-4)-beta glycosidic linkages adjacent to (1-3)-beta linkages. To construct an enzyme for efficient degradation of barley (1-3,1-4)-beta-glucan, the sequence encoding the catalytic domain and interdomain linker of the cellulase from Erwinia carotovora subspecies atroseptica was fused to that for the heat stable Bacillus hybrid, H(A12-M) delta Y13 (1-3,1-4)-beta glucanase. The chimeric enzyme secreted from Escherichia coli cells did not remain covalently assembled as judged by SDS-PAGE. However, the glycosylated and intact enzyme (denoted CELGLU) is secreted from the yeast Pichia pastoris. CELGLU exhibits both cellulase and (1-3,1-4)-beta-glucanase catalytic activities, and was accordingly classified a true multienzyme. HPLC and NMR analyses revealed that among the products from CELGLU, di- and trimeric oligosaccharides were identical to those produced by the parental cellulase. Tetrameric oligosaccharides, derived from the (1-3,1-4)-beta-glucanase activity of CELGLU, were further degraded by the cellulase moiety to yield glucose and trimers. Compared with the parental enzymes, CELGLU exhibits substantially higher Vmax for degradation of both soluble cellulose and barley (1-3,1-4)-beta-glucan. These findings point to construction of multienzymes as an effective approach for engineering enzymes with novel characteristics.

Artificial Gene Fusion↗

Uniform growth and neuronal integration.

1. The cable equations were analyzed to determine the effects of two patterns of uniform growth on the passive and active integrative properties of neurons. 2. During uniform isoelectrotonic growth, the diameters of all neuronal processes increase as the square of their increase in length, while the specific electrical properties and branch terminal conditions of the neuron remain constant. An analytic inductive proof is given to show that, for any neuron, uniform isoelectrotonic growth increases the input conductance everywhere by the cube of the growth factor, but leaves the active and passive spread of membrane potential within the neuron unchanged. The spread of membrane voltage is unchanged because this pattern of growth enables both the axial and membrane currents everywhere in the cell to increase by the cube of the growth factor. Synaptic inputs would evoke the same responses in the isoelectrotonically larger cell as in the smaller cell if the total postsynaptic conductance of the synapse increased with the dendritic membrane area. 3. During uniform isometric growth, the diameter and lengths of all processes increase by the same factor, while the specific electrical properties and branch terminal conditions remain constant. This pattern of uniform growth increases the input conductance by the square of the growth factor, and also increases the attenuation, delay, and low-pass filtering of the cell's responses. Voltage attenuation increases with isometric growth because the axial current increases in proportion to growth, while the membrane current increases in proportion to the square of the growth factor. Isometric growth reduces the ability of distal synaptic inputs to affect the membrane potential at proximal integrating sites, even after the synaptic conductance has increased to compensate for the increased input conductance. 4. These two patterns of uniform growth help define the consequences of all types of uniform growth for neuronal integration and responsiveness.

Electrophysiology↗

Gallbladder emptying and cholecystokinin response to fish oil and trioleate ingestion.

The aim of the present study was to compare gallbladder emptying, gastric emptying and release of cholecystokinin (CCK), gastrin and secretin after intragastric administration of fish oil and trioleate. After intravenous injection of 99mTc-HIDA, 30 ml of a lipid labelled with 111In was administered through a gastric tube. Using dual scintigraphy with two markers, gallbladder and gastric emptying were measured simultaneously for 120 min. Plasma concentrations of gastrin, secretin and CCK, were determined throughout the period. The emptying of the gallbladder was reduced by 27% and the release of CCK by 85% after fish oil as compared with trioleate. Gastric emptying as well as the release of gastrin and secretin were similar after the two types of fat. The results suggest that the reduced gallbladder emptying after fish oil may be due to a smaller release of CCK.

Adult↗

Importance of gastrin-releasing peptide on acid-induced secretin release and pancreaticobiliary and duodenal bicarbonate secretion.

BACKGROUND: Exogenous gastrin-releasing peptide (GRP) stimulates the release of secretin from the small intestine and pancreaticobiliary bicarbonate secretion in pigs. As acid is the principal stimulant of secretin release, the purpose of this study was to examine the importance of GRP in acid-induced secretin release and to determine whether GRP contributes to the regulatory function of acid-induced pancreaticobiliary bicarbonate secretion in anaesthetized pigs. METHODS AND RESULTS: Intravenous infusion of GRP (500 pmol/kg.h) increased significantly portal vein plasma concentrations of secretin from 1.3 to 5.4 pmol/l and GRP from 0.5 to 340 pmol/l, pancreatic bicarbonate secretion from 0.01 to 5.9 mmol/h, and hepatic bicarbonate secretion from 0.3 to 3.3 mmol/h, whereas duodenal mucosal bicarbonate secretion remained unchanged. Intravenous infusion of the GRP antagonist BIM-26226 completely abolished the GRP-induced secretin release and pancreatic and hepatic bicarbonate secretion. Furthermore, repeated infusions of GRP did not cause desensitization, and BIM-26226 therefore proved to be an effective GRP antagonist. Duodenal perfusion with acid (pH 1.5, 3.8 mmol/h) significantly increased portal vein plasma concentrations of secretin from 0.4 to 2.8 pmol/l, pancreatic bicarbonate secretion from 0.005 mmol/h to 0.19 mmol/h, hepatic bicarbonate secretion from 0.63 to 2.17 mmol/h, and duodenal mucosal bicarbonate secretion from 0.1 to 1.20 mmol/h. Of importance, infusion of BIM-26226 did not significantly alter the effect of intraduodenal acidification on plasma secretin release and pancreaticobiliary and duodenal bicarbonate secretion. CONCLUSIONS: Thus, we conclude that GRP likely plays an insignificant role in a possible peptidergic regulation of acid-induced intestinal secretin release and that GRP has no regulatory function in acid-induced pancreaticobiliary bicarbonate secretion. Furthermore, GRP has no effect on duodenal bicarbonate secretion.

Animals↗

Expression of an Erwinia pectate lyase in three species of Aspergillus.

Transgenic filamentous fungi of the species Aspergillus niger, A. nidulans and A. awamori expressing and secreting Erwinia carotovora subsp. atroseptica pectate lyase 3 (PL3) were generated. Correct processing of the pre-enzyme was achieved using the A. niger pectin lyase A (PEL A) signal peptide. With the prepro-peptide of A. niger polygalacturonase II, secreted enzymes still possessed the 6- aa pro-sequence, indicating the importance of the conformation of the precursor protein for correct cleavage of the signal sequence. PL3 expression was markedly increased in media optimized for limited protease activity, and reached 0.4, 0.8 and 2.0 mg/l for expression in A. niger, A. awamori and A. nidulans, respectively. Glycans attached to the PL3 enzymes exhibited species-specific differences, and an increase of molecular mass coincided with reduced specific activities of the enzymes.

Amino Acid Sequence↗

The 1.6 A structure of Kunitz-type domain from the alpha 3 chain of human type VI collagen.

The C-terminal Kunitz-type domain from the alpha 3 chain of human type VI collagen (C5), a single 58 amino acid residue chain with three disulfide bridges, was cloned, expressed and crystallized in a monoclonic form, space group P2(1), with a = 25.7 A, b = 38.2 A, c = 28.8 A and beta = 109 degrees. The structure was resolved by molecular replacement, using Alzheimer's protein precursor inhibitor and bovine pancreatic trypsin inhibitor three-dimensional structures as search models. The molecule with one sulfate ion and 43 associated water molecules was refined by XPLOR to an R-factor of 18.9% at 1.6 A. The molecule was not degraded by trypsin and did not inhibit trypsin or tested serine proteases. As opposed to the other Kunitz family members, C5 demonstrates left-handed chirality of the Cys14-Cys38 disulfide bond. Inversion of the Thr13 carbonyl and bulky side-chains at the interface with trypsin in a model of the C5-trypsin complex may explain the lack of inhibition of trypsin.

Amino Acid Sequence↗