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L Holm

Publications and source records attributed to L Holm.

At least 19 recordsLinked to original sources

Evaluation of protein models by atomic solvation preference.

Important properties of globular proteins, such as the stability of the folded state, depend sensitively on interactions with solvent molecules. An excluded volume approximation to protein-solvent interaction, the solvent contact model, was used to derive atomic solvation preference parameters from a database of known protein structures. The ability of solvation preference to discriminate between correct and incorrect three-dimensional structures for a given sequence, or to identify the correct sequence placement in a given structure, was tested. Backbone co-ordinates were taken from experimentally known structures or hypothetical models and side-chain conformations (in rotamer space) were optimized by an efficient Monte Carlo algorithm using simulated annealing and simple potential functions. Discrimination by solvation preference was very clear between deliberately misfolded and correct globular models as well as between native-like and non-native-like topologies of combinatorially generated myoglobin models. Due to its statistical nature, the evaluation works best on entire protein models, while the identification of incorrect parts of models is more difficult. In one case locally incorrect chain tracing in a crystal structure was identified. The method is computationally fast compared to methods based on surface area calculations and is recommended for use as a diagnostic tool in model building based on sequence similarity, in folding simulations and in protein design.

Amino Acid Sequence

A database of protein structure families with common folding motifs.

The availability of fast and robust algorithms for protein structure comparison provides an opportunity to produce a database of three-dimensional comparisons, called families of structurally similar proteins (FSSP). The database currently contains an extended structural family for each of 154 representative (below 30% sequence identity) protein chains. Each data set contains: the search structure; all its relatives with 70-30% sequence identity, aligned structurally; and all other proteins from the representative set that contain substructures significantly similar to the search structure. Very close relatives (above 70% sequence identity) rarely have significant structural differences and are excluded. The alignments of remote relatives are the result of pairwise all-against-all structural comparisons in the set of 154 representative protein chains. The comparisons were carried out with each of three novel automatic algorithms that cover different aspects of protein structure similarity. The user of the database has the choice between strict rigid-body comparisons and comparisons that take into account interdomain motion or geometrical distortions; and, between comparisons that require strictly sequential ordering of segments and comparisons, which allow altered topology of loop connections or chain reversals. The data sets report the structurally equivalent residues in the form of a multiple alignment and as a list of matching fragments to facilitate inspection by three-dimensional graphics. If substructures are ignored, the result is a database of structure alignments of full-length proteins, including those in the twilight zone of sequence similarity.(ABSTRACT TRUNCATED AT 250 WORDS)

Algorithms

Fast and simple Monte Carlo algorithm for side chain optimization in proteins: application to model building by homology.

An unknown protein structure can be predicted with fair accuracy once an evolutionary connection at the sequence level has been made to a protein of known 3-D structure. In model building by homology, one typically starts with a backbone framework, rebuilds new loop regions, and replaces nonconserved side chains. Here, we use an extremely efficient Monte Carlo algorithm in rotamer space with simulated annealing and simple potential energy functions to optimize the packing of side chains on given backbone models. Optimized models are generated within minutes on a workstation, with reasonable accuracy (average of 81% side chain chi 1 dihedral angles correct in the cores of proteins determined at better than 2.5 A resolution). As expected, the quality of the models decreases with decreasing accuracy of backbone coordinates. If the back-bone was taken from a homologous rather than the same protein, about 70% side chain chi 1 angles were modeled correctly in the core in a case of strong homology and about 60% in a case of medium homology. The algorithm can be used in automated, fast, and reproducible model building by homology.

Algorithms

Stimulation of acid secretion increases the gastric gland luminal pressure in the rat.

The gastric mucosal gland luminal pressure was measured in vivo with a pressure-sensitive microelectrode technique (servo-null) in anesthetized rats. A microelectrode was inserted into a gland lumen by means of a micromanipulator at an angle of 30 degrees to the mucosal surface. Acid secretion was estimated by measuring the pH in the solution covering the mucosa. During control conditions, when the mucosa was secreting acid spontaneously, gland luminal pressure was 12.3 +/- 1.2 mm Hg. At about 9 minutes after starting pentagastrin administration, the luminal pressure stabilized at 17.2 +/- 1.7 mm Hg. In the rats given impromidine (500 micrograms.kg-1.h-1) luminal pressure gradually increased (during 9-10 minutes) from a control level of 9.0 +/- 1.9 to 17.3 +/- 2.6 mm Hg. During the majority of experiments, the luminal pressure oscillated at 3-7 cycles per minute. The results show that intraluminal pressure increases during stimulated acid secretion, indicating that a resistance to the volume secretion exists in the upper part of the gastric crypts. This hydrostatic pressure may well be the driving force for creating channels for acid and pepsin to cross the mucus layer covering the mucosal surface.

Animals

Renal interstitial pressure and tubuloglomerular feedback control in rats during infusion of atrial natriuretic peptide (ANP).

Atrial natriuretic peptide (ANP), injected at physiological concentrations, is known to induce both natriuresis and diuresis. It has been suggested by some investigators that these changes result from an increasing glomerular filtration rate (GFR), but others have been unable to demonstrate an increased GFR. The tubuloglomerular feedback (TGF) mechanism is an important regulator of GFR, and the sensitivity of TGF is decreased during ANP administration. Furthermore, resetting of TGF is, in most instances, related to changes in renal interstitial hydrostatic and oncotic pressures. It is also known that ANP may increase capillary permeability which may change renal interstitial pressure. The present study was performed to examine renal interstitial pressures and the TGF mechanism during ANP infusion. In accordance with previous studies, TGF sensitivity was found to be decreased. The tubular flow rate which elicited half the maximal drop in stop-flow pressure (Psf) was increased from 18.5 to 25.7 nl min-1. In contrast, ANP infusion resulted in a decreased interstitial hydrostatic pressure and an increased interstitial oncotic pressure. From previous experiments, such changes in interstitial pressures would be expected to increase TGF sensitivity. The changes in interstitial pressure cannot, therefore, directly explain the resetting of the feedback mechanism. In conclusion, the present paper shows a decreased renal net interstitial pressure after intravenous administration of ANP.

Animals

Role of prostaglandins in regulation of gastric mucosal blood flow and acid secretion.

The role of prostaglandins in the rat gastric mucosal vascular response to acid stimulation was studied. Blood flow was measured with laser-Doppler flowmetry (LDF) and with red blood cell velocity measurements in the superficial mucosa; acid secretion was determined by titration. Baseline acid output was calculated to be 0.026 +/- 0.011 mueq/min. Pentagastrin (20 and 40 micrograms.kg-1.h-1 iv) significantly increased acid output to 0.387 +/- 0.104 and 0.546 +/- 0.220 mueq/min and LDF to 119 +/- 10 and 132 +/- 13% of control, respectively. LDF was significantly reduced by 15% after indomethacin (3 mg/kg iv) and was not changed by pentagastrin, whereas acid secretion increased to similar levels as without indomethacin pretreatment. The H2-agonist impromidine (100 and 500 micrograms.kg-1.h-1 iv) induced a dose-dependent increase in acid secretion (0.178 +/- 0.068 and 0.330 +/- 0.072 mueq/min, respectively) while blood flow was unchanged. Despite a substantial blood flow reduction (-38%) by indomethacin, impromidine did not alter blood flow, and acid secretion was dose dependently increased to similar values as without indomethacin pretreatment. These results provide further evidence that there is not necessarily any correlation between blood flow and acid secretion and that the pentagastrin-induced blood flow increase depends on prostaglandin release.

Animals

Database algorithm for generating protein backbone and side-chain co-ordinates from a C alpha trace application to model building and detection of co-ordinate errors.

The problem of constructing all-atom model co-ordinates of a protein from an outline of the polypeptide chain is encountered in protein structure determination by crystallography or nuclear magnetic resonance spectroscopy, in model building by homology and in protein design. Here, we present an automatic procedure for generating full protein co-ordinates (backbone and, optionally, side-chains) given the C alpha trace and amino acid sequence. To construct backbones, a protein structure database is first scanned for fragments that locally fit the chain trace according to distance criteria. A best path algorithm then sifts through these segments and selects an optimal path with minimal mismatch at fragment joints. In blind tests, using fully known protein structures, backbones (C alpha, C, N, O) can be reconstructed with a reliability of 0.4 to 0.6 A root-mean-square position deviation and not more than 0 to 5% peptide flips. This accuracy is sufficient to identify possible errors in protein co-ordinate sets. To construct full co-ordinates, side-chains are added from a library of frequently occurring rotamers using a simple and fast Monte Carlo procedure with simulated annealing. In tests on X-ray structures determined at better than 2.5 A resolution, the positions of side-chain atoms in the protein core (less than 20% relative accessibility) have an accuracy of 1.6 A (r.m.s. deviation) and 70% of chi 1 angles are within 30 degrees of the X-ray structure. The computer program MaxSprout is available on request.

Algorithms

Pretreatment serum levels of CA-125, carcinoembryonic antigen, tissue polypeptide antigen, and placental alkaline phosphatase, in patients with ovarian carcinoma, borderline tumors, or benign adnexal masses: relevance for differential diagnosis.

Pretreatment serum levels of the antigens CA-125, tissue polypeptide Antigen (TPA), carcinoembryonic antigen (CEA), and placental alkaline phosphatase (PLAP) were determined in samples from 295 women with adnexal masses. At laparotomy 48% of patients had epithelial ovarian carcinoma, 9% had tumors of low malignant potential, and 8% suffered from malignancies of other kinds. The sensitivity of CA-125 with 35 U/ml as the cutoff was 88% in women with ovarian carcinoma, but 74% among those with limited disease and 58% in borderline malignancy. Only 6 of 17 mucinous ovarian carcinomas were detected. Specificity was 83%. CEA was elevated above 5.0 micrograms/liter in 15 of 17 patients with mucinous ovarian cancer. TPA detected advanced stages of malignancy, but the sensitivity was low, 53%, in cases with limited disease. PLAP was elevated in 46% of ovarian carcinoma patients. For detecting malignancy overall, the use of a parallel combination of the CA-125 and CEA assays was more sensitive than use of CA-125 as a single marker. This test combination may be of value in the diagnosis of adnexal masses. The predictive value of a positive result was 90%, and that of a negative result, 76%.

Adnexal Diseases

Site-directed mutagenesis of a thermostable alpha-amylase from Bacillus stearothermophilus: putative role of three conserved residues.

The relationship between structure, activity, and stability of the thermostable Bacillus stearothermophilus alpha-amylase was studied by site-directed mutagenesis of the three most conserved residues. Mutation of His-238 to Asp involved in Ca2+ and substrate binding reduced the specific activity and thermal stability, but did not affect the pH and temperature optima. Replacement of Asp-331 by Glu in the active site caused almost total inactivation. Interestingly, in prolonged incubation this mutant enzyme showed an altered end-product profile by liberating only maltose and maltotriose. Conservative mutation of the conserved Arg-232 by Lys, for which no function has yet been proposed, resulted in lowered specific activity: around 12% of the parental enzyme. This mutant enzyme had a wider pH range but about the same temperature optimum and thermal stability as the wild-type enzyme. Results obtained with different mutants were interpreted by computer aided molecular modeling.

Amino Acid Sequence

Random mutagenesis used to probe the structure and function of Bacillus stearothermophilus alpha-amylase.

Mutations that cover the sequence of Bacillus stearothermophilus alpha-amylase were produced by an efficient in vitro enzymatic random mutagenesis method and the mutant alpha-amylases were expressed in Escherichia coli, which also secreted the product. Ninety-eight mutants were identified by sequencing and their enzyme activities were classified into three classes: wild-type, reduced or null. A molecular model of the enzyme was constructed using the coordinates of Takaamylase A and a consensus alignment of mammalian, plant, and bacterial alpha-amylases. The location of mutant amino acids on the model indicate that mutations which destroy or decrease the catalytic activity are particularly clustered: (i) around the active site and along the substrate-binding groove and (ii) in the interface between the central alpha/beta barrel and the C-terminal domain. Exposed loops are typically tolerant towards mutations.

Amino Acid Sequence

Molecular modelling study of antigen binding to oxazolone-specific antibodies: the Ox1 idiotypic IgG and its mature variant with increased affinity to 2-phenyloxazolone.

Structural models of the variable domains of the murine anti-2-phenyloxazolone IgG (Ox1 idiotype) and its somatic variant, which has higher affinity to the hapten 2-phenyloxazolone, were constructed by computer-aided model building using known structures of highly homologous immunoglobulins as templates. Molecular dynamics simulations were used to dock the hapten between the VL and VH domains. The hapten is predicted to bind to slightly different sites in the two models. Hypotheses concerning the role of a number of preferred mutations in anti-oxazolone variants are presented. These can be tested by mutagenesis and crystallography. In particular, the higher binding affinities of the different antibody variants are shown to correlate with better complementarity of electrostatics. The molecular dynamic simulations also suggest that two mobile tryptophans at the mouth of the pocket may play an important role in the binding of hapten.

Amino Acid Sequence

Effects of cigarette smoke and nicotine on duodenal bicarbonate secretion in the rabbit and the rat.

The effects of short-time exposure to cigarette smoke on duodenal mucosal bicarbonate secretion were studied in anesthetized rabbits and rats. The bicarbonate secretion was measured by continuous titration of recirculating luminal perfusate. In artificially ventilated rabbits, intermittent exposure to cigarette smoke during two 10-min periods caused a marked (approximately 40%) decrease (p less than 0.01) in duodenal bicarbonate secretion. After the exposures, secretion gradually recovered and had returned to the pre-exposure rate after 50 min. The decrease in secretion was associated with decreases in heart rate (approximately 15%) and blood pressure (approximately 30%) that, however, were of shorter duration. Neither reduced amounts of smoke (1/6 or 1/3) nor nicotine (25-1,000 micrograms/kg, intravenously) had any major effect on the bicarbonate secretion. In the spontaneously breathing rat, smoke was administered for 1-2 breaths every 30 s during a 5-min period. This exposure resulted in a significant (p less than 0.05) decrease in bicarbonate secretion and some increase in the blood pressure. Exposure to smoke had no effect on the secretion in rats with both splanchnic nerves cut, suggesting neural sympathetic mediation of the smoke-induced inhibition.

Animals

Microscopy of acid transport at the gastric surface in vivo.

In vivo microscopy of the gastric surface, and pH-sensitive dyes, were used to study the movement of acid formed in the gastric crypts across the mucus layer adherent to the gastric surface and into the lumen. Rats were anaesthetized and the stomach gently exteriorized. When the pH-sensitive dye Congo red was applied luminally to stain the gel, predominantly red spots (pH greater than 5) and occasional blue spots (pH less than 3), located above the outlets of the crypts, were observed in spontaneously-secreting mucosae. Maximal stimulation of acid secretion (pentagastrin, 40 micrograms kg-1 h-1) resulted in the appearance only of blue spots, but the pH in the mucus gel between the crypts remained more alkaline, as indicated by pink staining. The fluorescence dye acridine orange was injected intravenously to an estimated blood concentration of 10(-5)M in another type of experiment. This dye is concentrated and secreted by the parietal cells. Pronounced fluorescence was observed within spots of the gastric surface corresponding to the outlets of the gastric crypts, but no fluorescence was detected outside these areas. The results obtained with both dyes strongly suggest that acid (and pepsin) is transported across the mucus gel only at restricted sites.

Acridine Orange

Resetting of the pressure range for blood flow autoregulation in the rat kidney.

Both a myogenic response and the tubuloglomerular feedback control mechanism seem to be involved in autoregulation of glomerular filtration rate (GFR) and renal blood flow (RBF). Earlier experiments have shown that clamping of renal arterial perfusion pressure, below the autoregulatory range, reduces single-nephron GFR, and that this low value is maintained during the first 10-15 min after release of the clamp. It was also found that the tubuloglomerular feedback mechanism in the early declamp phase was strongly activated to reduce GFR. These findings can not be easily understood with the current knowledge of autoregulation, but would suggest a resetting of RBF and GFR autoregulation to a new level. To test this, left renal arterial perfusion pressure was reduced from 100 to 60 mmHg during 20 min with and without angiotensin converting enzyme inhibition (0.5 mg i.v. enalapril). Renal blood flow was measured with laser-Doppler flowmetry. When arterial perfusion pressure was reduced from 100 to 60 mmHg for 20 min, RBF was reduced to 77% of control and remained at this low level during the first minutes of declamp. In this situation there was an autoregulation to a new level. Renal blood flow was then slowly normalized (16.1 min). In the enalapril-treated animals RBF was only reduced to 85% during the 20 min of clamping and returned immediately to the control level at declamp. Thus, these experiments demonstrate that if renal blood flow is decreased by reducing the perfusion pressure below the normal autoregulatory range the pressure range for blood flow autoregulation resets to a lower level and that this change is mediated via the renin-angiotensin system.

Animals

Duodenal alkaline secretion in rabbits: influence of artificial ventilation.

The effect of artificial ventilation on duodenal alkaline secretion and blood flow was studied in sodium pentobarbital-anaesthetized rabbits. A duodenal segment (approximately 3 cm) was cannulated in situ and continuously perfused with isotonic saline, and the bicarbonate secretion was titrated by pH-stat. Compared with the spontaneous breathing state, artificial ventilation improved the respiratory status of the animal, increasing Po2 and decreasing both Pco2 and plasma bicarbonate. Duodenal blood flow as measured with laser-Doppler flowmetry was not altered but the alkaline secretion was reduced. Pretreatment with the alpha 2-adrenoceptor antagonist yohimbine (0.5 mg kg-1 i.v., followed by 0.5 mg kg-1 h-1 i.v.) or the ganglionic blocker hexamethonium (10 mg kg-1 i.v.) did not affect the decline in duodenal alkaline secretion in response to artificial ventilation. Nor did these pretreatments affect the changes in plasma bicarbonate and Pco2 or significantly alter the blood flow. Increasing Pco2 in the respirator air increased the plasma Pco2 and bicarbonate concentration as well as the duodenal bicarbonate secretion. Pretreatment with the carbonic anhydrase inhibitor acetazolamide (80 mg kg-1 i.v.) reduced the bicarbonate secretion, and artificial ventilation induced a further reduction. Increasing Pco2 in the respirator in the animals pretreated with acetazolamide did not affect the bicarbonate secretion. Duodenal alkaline secretion was thus always reduced on artificial ventilation. The mechanism for this reduction does not seem to involve the sympathetic nervous system or the blood flow, but appears to be the consequence of alterations in the plasma concentration of bicarbonate and the plasma Pco2.

Acetazolamide

Effects of hypovolemia on blood flow, arterial [HCO3-], and HCO3- output in the rat duodenum.

The effects of bleeding-induced hypovolemia on duodenal blood flow (microsphere technique), arterial [HCO3-], and duodenal HCO3- secretion (in situ titration) were investigated in chloralose-anesthetized rats. A 10% decrease in blood volume reduced duodenal HCO3- secretion by 44%, duodenal blood flow by 31%, and arterial [HCO3-] by 11%. In a group with cervically cut vagal nerves, basal duodenal HCO3- secretion was greater than 50% lower compared with controls. Basal blood flow and arterial [HCO3-] were on similar levels as in nonvagotomized animals. Furthermore, bleeding failed to lower duodenal alkaline output in rats with cut vagal nerves, although blood flow and arterial [HCO3-] were reduced to a similar extent as in the vagally intact controls. In a yohimbine-treated group, a 10% bleeding reduced duodenal blood flow by 28% and arterial [HCO3-] by 7% without influencing duodenal HCO3- secretion. We suggest that the hypovolemia-induced inhibition of duodenal alkaline secretion is not caused by a decrease in blood and/or arterial [HCO3-]. Instead, other factors may be of importance, for example, neural effects on enteric secretomotor neurons or directly on the secreting epithelium.

Animals

Primary structure of the brain alpha-spectrin.

We have determined the nucleotide sequence coding for the chicken brain alpha-spectrin. It is derived both from the cDNA and genomic sequences, comprises the entire coding frame, 5' and 3' untranslated sequences, and terminates in the poly(A)-tail. The deduced amino acid sequence was used to map the domain structure of the protein. The alpha-chain of brain spectrin contains 22 segments of which 20 correspond to the repeat of the human erythrocyte spectrin (Speicher, D. W., and V. T. Marchesi. 1984. Nature (Lond.). 311:177-180.), typically made of 106 residues. These homologous segments probably account for the flexible, rod-like structure of spectrin. Secondary structure prediction suggests predominantly alpha-helical structure for the entire chain. Parts of the primary structure are excluded from the repetitive pattern and they reside in the middle part of the sequence and in its COOH terminus. Search for homology in other proteins showed the presence of the following distinct structures in these nonrepetitive regions: (a) the COOH-terminal part of the molecule that shows homology with alpha-actinin, (b) two typical EF-hand (i.e., Ca2+-binding) structures in this region, (c) a sequence close to the EF-hand that fulfills the criteria for a calmodulin-binding site, and (d) a domain in the middle of the sequence that is homologous to a NH2-terminal segment of several src-tyrosine kinases and to a domain of phospholipase C. These regions are good candidates to carry some established as well as some yet unestablished functions of spectrin. Comparative analysis showed that alpha-spectrin is well conserved across the species boundaries from Xenopus to man, and that the human erythrocyte alpha-spectrin is divergent from the other spectrins.

Amino Acid Sequence