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S Lindskog

Publications and source records attributed to S Lindskog.

At least 19 recordsLinked to original sources

Proton transfer roles of lysine 64 and glutamic acid 64 replacing histidine 64 in the active site of human carbonic anhydrase II.

The CO2 hydration activities of cloned human carbonic anhydrase II (carbonate hydro-lyase, EC 4.2.1.1) and variants with Lys, Glu, Gln or Ala replacing His at sequence position 64 have been measured in a variety of different buffers in the pH range 6-9. The variants with Lys-64, Gln-64 and Ala-64 showed non-Michaelis-Menten behavior under some conditions, apparent substrate inhibition being prominent near pH 9. However, asymptotic Michaelis-Menten parameters could be estimated for the limit of low substrate concentrations. All variants show distinct buffer specificities, and imidazole derivatives, Ches and phosphate buffers yield higher kcat values that Bicine, Taps and Mops buffers under otherwise similar conditions. These results are interpreted in terms of different pathways for a rate-limiting proton transfer. In unmodified enzyme, the very high catalytic activity depends on His-64 functioning as an efficient proton transfer group, but this pathway is not available in the variants with Gln-64 and Ala-64. Imidazoles, Ches and phosphate are thought to participate in a metal center-to-buffer proton transfer pathway, whereas Bicine, Taps, Mops and Mes appear to lack this capacity, so that the rate-limiting proton transfer occurs in a metal center-to-bulk water pathway for these variants. The Lys-64 and Glu-64 variants give significantly higher kcat values in Taps, Mops and Mes buffers than the Ala-64 and Gln-64 variants. The pH dependencies of these kcat values are compatible with the hypothesis that Lys-64 and Glu-64 can function as proton transfer groups. Thus, at pH near 9, Lys-64 appears to be only 5-times less efficient than His-64, while Glu-64 is inefficient. At pH 6, Lys-64 is an inefficient proton transfer group, but Glu-64 is only 2-3-times less efficient than His-64. The data indicate that Lys-64 and Glu-64 have pKa values near 8 and below 6, respectively.

Binding Sites

Buffer dependence of CO2 hydration catalyzed by human carbonic anhydrase I.

The steady-state kinetics of CO2 hydration catalyzed by human carbonic anhydrase I (carbonate hydro-lyase, EC 4.2.1.1) has been investigated at three pH values corresponding to different parts of the pH-rate profile. Two buffer systems with similar pKa values were used at each pH. The results show that the catalyzed rates depend on the buffer concentration but also on the chemical nature of the buffer. For example, at pH 8.8 the buffer 1,2-dimethylimidazole behaves formally as a second substrate in a 'ping-pong' mechanism yielding a maximal kcat value of 2.2 x 10(5) s-1, whereas much lower rates were obtained with Taps buffers. Similarly, at pH 7.3 1-methylimidazole yields higher rates than Mops and at pH 6.3 3,5-lutidine is more efficient than Mes. Non-Michaelis-Menten kinetics were observed with all buffers except 1,2-dimethylimidazole. In addition, while the apparent buffer activation by 1,2-dimethylimidazole can be described by a single Km value of 26 mM, the Mes concentration dependence is consistent with the presence of two components of similar magnitudes with Km values of 45 mM and 0.15 mM. These results are interpreted within the framework of the 'zinc-hydroxide' mechanism in terms of multiple pathways for the rate-contributing transfer of a proton from the zinc-bound water molecule, formed during CO2/HCO3- interconversion, to the reaction medium, thus, regenerating zinc-bound OH-.

Buffers

The novel high-affinity antagonist, galantide, blocks the galanin-mediated inhibition of glucose-induced insulin secretion.

This study describes the synthesis and effects of the first antagonist to the widely distributed neuropeptide, galanin, which inhibits the secretion of insulin. The first galanin antagonist is a 20-amino acid-long chimeric peptide of the composition galanin-(1-12)-Pro-substance P-(5-11) amide: Gly-Trp-Thr-Leu-Asn-Ser-Ala-Gly-Tyr-Leu-Leu-Gly-Pro-Gln-Gln-Phe-Phe-Gly- Leu-Met amide. The peptide dose dependently (IC50 = 1.0 nM) antagonizes the galanin-mediated inhibition of the glucose-induced insulin secretion from mouse pancreatic islets. The antagonist was also found to displace 125I-monoiodo-[Tyr26]galanin from membranes of the insulin producing Rin m 5F cells with an IC50 value of less than 0.1 nM. The antagonist is named galantide.

Amino Acid Sequence

The neuropeptide galanin occurs in two conformations.

The secondary structure of the six known species forms of galanin was predicted using a statistical method. In the region between positions 13 and 20 the model predicts alpha-helical structures in human, cow, and chicken galanin, whereas the model does not predict alpha-helical structures in the same region of pig, rat, and sheep galanin. Based on the different conformational states of galanin, the species forms of galanin could be divided in two groups: galanin A (= human, cow, chicken galanin) and galanin B (= pig, rat, and sheep galanin). A chemical explanation might thus be provided for the observed differences in potency between different species forms of galanin (A or B) to inhibit insulin secretion.

Amino Acid Sequence

Orthodontic magnets: effects on gingival epithelium and alveolar bone in monkeys.

The purpose of the present study was to examine soft and hard oral tissues in contact with or close to orthodontic magnets following an extended exposure time. Two male monkeys were used in the experiment. Individual silver splints covering the teeth from 17 to 27 in the upper jaw and 32-42 in the lower jaw were made. Co5Sm magnets were inserted with cold-curing acrylic buccally and lingually in the splints. The monkeys were injected with tetracycline at the start of the experiment and after 4 weeks. The epithelial thickness in buccal and lingual mucosa under the magnets and corresponding sites on the control side were estimated. The intensity of tetracycline fluorescence in the bone under the magnets and corresponding control sites was assessed semiquantitatively. A thinner epithelium compared to the controls and a patchy tetracycline-incorporation in the bone adjacent to orthodontic magnets in contrast to a homogeneous tetracycline fluorescent pattern in the controls were the most conspicuous findings. It cannot be excluded that the magnetic field or corrosion products from the magnetic material influenced vital processes in the epithelium and the bone close to the magnets. However, it cannot be concluded from the present study what cellular processes were affected.

Alveolar Process

Effects of galanin and norepinephrine on insulin secretion in the mouse.

Galanin and norepinephrine (NE) both occur in adrenergic nerves in the pancreas. Since they are co-released from the nerve terminals and both inhibit glucose-induced insulin release, we investigated in the mouse if they cooperate in exerting this effect. When administered alone in vivo, both galanin (50-530 pmol/kg) and NE (40-320 nmol/kg) dose-dependently inhibited the increase in plasma insulin levels at 1 min following intravenous injection of glucose (2.8 mmol/kg). When galanin and NE were given together at different dose levels, no potentiating effect on the inhibition of the glucose-induced plasma insulin response was observed. In vitro, in overnight cultured mouse islets, both galanin (10(-9)-10(-6) M) and NE (10(-9)-10(-6) M) in a dose-related manner inhibited the insulin release induced by 11.1 mM glucose. Galanin (10(-9) M) did not further enhance the inhibited insulin response evoked by NE (10(-9)-10(-6) M). Thus, no functional evidence exists, either in vivo or in vitro, that galanin and NE potentiate the inhibitory action of each other on glucose-induced insulin release in the mouse.

Animals

Endodontic infection and calcium hydroxide-treatment. Effects on periodontal healing in mature and immature replanted monkey teeth.

Large experimental defects with marginal communication, and small isolated experimental defects were created on the root surfaces of extracted monkey lateral incisors with either open or closed apices. The pulp tissue was either infected or removed, and calcium hydroxide placed in the root canal. The teeth were then replanted and the healing pattern evaluated histomorphometrically after 20 weeks. From the results, it was concluded that (1) an intrapulpal infection promotes marginal epithelial down-growth on a denuded dentin surface irrespective of tooth developmental stage, and that (2) the periodontal healing potential after calcium hydroxide-treatment appears to be higher in teeth with open apices compared with teeth with closed apices, where ankylosis was promoted as opposed to teeth with open apices where significantly more reparative cementum was found.

Animals

Mineralized tissue-formation in periodontal wound healing.

The purpose of the present study was to examine and compare the different mineralized tissues that are found on and around the dental root following treatment of different periodontal pathosis. The material has been compiled from previously published experimental studies on periodontal therapies and trauma treatments. 4 distinctly different appearances of the mineralized tissue layers on the marginal dentin surfaces were described; new cementum, non-attached bone-like tissue, partly attached bone-like tissue and ankylosis preceded by root resorption. It was concluded that, healing in the periodontal/root interface following periodontal therapy may yield different mineralized tissues, depending on a number of host-specific and external factors. The temporal pattern of such healing processes is schematically represented.

Alveolar Bone Loss

Pancreastatin inhibits insulin secretion from isolated rat islets: studies on its mechanism of action.

The peptide pancreastatin is known to inhibit insulin secretion. To study its mechanism of action, we examined the effects of pancreastatin on 45Ca(2+)- and 86Rb(+)-efflux from isolated rat islets. We found that glucose (8.3 mmol/l)-stimulated insulin secretion was totally abolished by pancreastatin (100 nmol/l). It is known that glucose reduces the 86Rb(+)-efflux and increases the 45Ca(2+)-efflux from prelabelled islets, which reflects its action on the K(+)- and Ca(2+)-permeabilities. We found that pancreastatin reduced the glucose-stimulated increase in 45Ca(2+)-efflux without affecting the 86Rb(+)-efflux. This shows that pancreastatin inhibits the action of glucose on Ca(2+)-channels, without influencing the closure of K(+)-channels induced by the sugar. The results indicate that pancreastatin does not inhibit insulin secretion by hyperpolarizing the B-cells, but rather that the peptide inhibits insulin secretion by inhibiting the glucose-stimulated B-cell Ca(2+)-uptake that evolves by depolarization.

Animals

Factors regulating and modifying dental root resorption.

A comparison is made between the resorption of bone and the resorption of the mineralized tissues of teeth. The structure and function of osteoclasts are described well as the factors that regulate their activity. The cells resorbing the dental mineralized tissues are of the same cell type as osteoclasts. The dental tissues are covered by cementoblasts or odontoblasts which differ from the osteoblasts in that they do not respond to hormones and cytokines that stimulate bone resorption. Root resorption therefore seem to require damage of the cementoblastic layer in combination with necrosis or inflammation or replacement of the cementoblastic layer by osteoblasts. The root resorption that occurs at the shedding of the primary teeth is induced in a different way possibly by substance(s) from the reduced enamel epithelium. There seems to be no systematic study on the frequency and extension of root resorption in association with inflammatory or neoplastic conditions. It is suggested that dentigerous cysts and some epithelial tumors induce root resorption in the same way as the erupting tooth. The mechanisms by which some other tumors or tumor-like conditions cause root resorption are essentially unknown.

Animals

Studies on the mechanism by which galanin inhibits insulin secretion in islets.

The mechanism by which the neuropeptide galanin inhibits insulin secretion in normal islets is not yet fully elucidated. Isolated rat or mouse islets were perifused in a medium containing glucose (8.3 mM) and galanin (10(-6) M) or the sulphonamide diazoxide (400 microM). In rat islets prelabelled with 86Rb+ or 45Ca2+, galanin inhibited glucose-induced insulin secretion at the same time as increasing 86Rb+ efflux and reducing 45Ca2+ efflux. The diazoxide-induced 86Rb+ efflux was not affected by galanin, indicating that galanin activates ATP-regulated K+ channels in rat islets. In mouse islets prelabelled with 86Rb+, galanin (10(-6) M) decreased 86Rb+ efflux. These results suggest that galanin inhibits insulin release in isolated islets by increasing K+ and decreasing Ca2+ permeability. The increased K+ permeability, which is probably regulated differently in rat and mouse islets, is followed by a reduced Ca2+ influx, possibly through voltage-dependent Ca2+ channels. In addition, during a 60-min incubation with isolated islets, galanin inhibited insulin secretion induced by forskolin (1 microM), dibutyryl cyclic AMP (1 mM), or TPA (12-O-tetradecanoylphorbol-13-acetate; 0.1 microM). Galanin also reduced the content of cyclic AMP in islets stimulated by 16.7 mM glucose. We therefore conclude that the inhibitory action of galanin on insulin secretion in normal islets includes increasing K+ permeability as well as interference with the activation of adenylate cyclase and the activity of protein kinase C and cyclic AMP.

Animals

Some properties of site-specific mutants of human carbonic anhydrase II having active-site residues characterizing carbonic anhydrase III.

Four amino acid residues, His64, Asn67, Leu198 and Val207, in the active site of human carbonic anhydrase II, have been replaced by Lys64, Arg67, Phe198 and Ile207, which are characteristic for the muscle-specific, low-activity isoenzyme form, carbonic anhydrase III. The aim of the investigation has been to test if any of these residues, or a combination of them, is important for the low CO2 hydration activity, low esterase activity, low pKa for the pH/rate profile and low affinity for sulfonamide inhibitors characterizing carbonic anhydrases III. However, no evidence for such critical roles was found. A combination of Lys64 and Arg67 appears to result in a decrease in CO2 hydration activity, but even the quadruple mutant having all four changes is only eight times less active (kcat/Km) than unmodified isoenzyme II, in contrast to isoenzyme III which is nearly 300 times less active than isoenzyme II. The 4-nitrophenyl acetate hydrolase activity of the quadruple mutant is sevenfold lower than that of unmodified isoenzyme II, while the active site of isoenzyme III hardly catalyzes the hydrolysis of this ester at all. The pKa controlling the esterase activity of the quadruple mutant is 6.2, which should be compared to a value of 6.8 for unmodified isoenzyme II, and about 5 for isoenzyme III. While isoenzyme III binds sulfonamide inhibitors 10(3)-10(4) times less strongly than isoenzyme II, only [Asn-67----Arg]isoenzyme II shows a weaker binding of the investigated sulfonamide, dansylamide, but only by a factor of two. Some of the other mutants show enhanced affinities, up to nearly fourfold for the double mutant with Phe198 and Ile207. It is speculated that additional differences between the active sites of isoenzyme II and III might be important for the precise orientations and interactions of the side chains of isoenzyme-III-specific amino acid residues.

Binding Sites

Structural and functional differences between carbonic anhydrase isoenzymes I and II as studied by site-directed mutagenesis.

Site-specific mutagenesis has been used to replace amino acid residues in the active site of human carbonic anhydrase II with residues characterizing carbonic anhydrases I. Previous studies of [Thr200----His]isoenzyme II [Behravan, G., Jonsson, B.-H. & Lindskog, S. (1990) Eur. J. Biochem. 190, 351-357] showed that His200 is important for the specific catalytic properties of isoenzymes I. In this paper some properties of two single mutants, Asn62----Val and Asn67----His, as well as a double mutant, Asn67----His/Thr200----His, are described. The results show that neither Val62 nor His67 give rise to isoenzyme-I-like properties, while the double mutant behaves like the single mutant with His200. At pH 8.9, the variant with Val62 has a higher value of kcat/Km for CO2 hydration than unmodified isoenzyme II, whereas the variant with His67 has an enhanced kcat value. The replacement of Asn62 with Val results in a 20% increase of the 4-nitrophenyl acetate hydrolase activity. For the double mutant, the esterase activity is quite close to that calculated on the assumption that the effects of the two single mutations on the free energy of activation are additive.

Amino Acid Sequence

Fine tuning of the catalytic properties of human carbonic anhydrase II. Effects of varying active-site residue 200.

The active-site residue Thr200 in human carbonic anhydrase II has been replaced by several different amino acids by site-directed mutagenesis. The CO2 hydration and 4-nitrophenyl acetate hydrolase activities of these variants have been measured, as well as inhibition by the monovalent anion, SCN-. The results show that the replacement of Thr200 with Ser or Ala has no significant effect on the catalyzed rates of CO2 hydration. Also, variants with Asn200 and Gly200 have high activities, whereas the activities of variants with Val, Ile or Arg at position 200 are reduced by factors of 2-3 compared to the unmodified enzyme. The variant with Asp200 has a very low activity in both reactions studied, while most of the other variants have enhanced esterase activities, Thr200----Arg isoenzyme II as much as sevenfold. The Asp200 variant has a low affinity for SCN- as well as for a sulfonamide inhibitor, whereas all the other variants bind SCN- more strongly than unmodified enzyme. While His200 characterizes carbonic anhydrases I, the presence of Arg, Val or Ile as well as His at position 200 in human isoenzyme II seems to result in isoenzyme-I-like functional properties.

Binding Sites

Electronic energy transfer and fluorescence quenching in the active sites of mercuric reductase.

The FAD-containing enzyme mercuric reductase has been studied by means of steady-state and time-resolved fluorescence spectroscopy. The fluorescence relaxation of the excited state of the isoalloxazine ring of FAD can be described by a sum of two exponential functions. The two lifetimes are not due to a different lifetime of each of the two FAD molecules of mercuric reductase. The FAD molecules are quenched dynamically by a quencher that is not sensitive to the solvent viscosity. In vitro activation induces a dynamic quenching of fluorescence, while upon binding of NADP+ the FAD molecules are both statically and dynamically quenched. Time-resolved fluorescence anisotropy experiments of mercuric reductase in water show that the isoalloxazine ring probably undergoes a rapid and restricted vibrational motion of small amplitude. Electronic energy transfer occurs between the two FAD molecules at a rate of about 3.4 x 10(7) s-1. The angle between the emission transition dipole of the donor and the absorption transition dipole of the acceptor is 137 +/- 2 degrees (or 43 +/- 2 degrees). From previous X-ray data of glutathione reductase we find that the corresponding angle is 160 degrees. This suggests that the isoalloxazine rings of mercuric reductase and glutathione reductase are mutually tilted in slightly different ways.

Binding Sites

Galanin-immunoreactive nerves in the mouse and rat pancreas.

Galanin-containing nerve fibers have previously been observed in the human, dog, and pig pancreas. Whether the mouse and rat pancreas also contain galanin nerve fibers has been a matter of debate. Therefore, we examined the distribution of galanin in the mouse and the rat pancreas. Further, the possible localization of galanin to adrenergic nerves was studied using sequential immunostaining for galanin and tyrosine hydroxylase (TH). In the mouse pancreas, numerous galanin-immunoreactive (GIR) nerve fibers occurred around blood vessels. They were less numerous in the exocrine parenchyma and in association with the islets. In contrast, in the rat pancreas, only a few GIR nerves were found. They were located around blood vessels and scattered in the exocrine parenchyma. Occasionally, GIR nerves were also observed in the islets. There was a dense distribution of TH-immunoreactive fibers in both the mouse and the rat pancreas. Sequential immunostaining revealed co-localization of galanin and TH immunoreactivity in nerve fibers in both the mouse and the rat pancreas. Following chemical sympathectomy using 6-hydroxydopamine (6-OHDA), not all GIR nerves disappeared. In the mouse pancreas a remaining population of galanin nerves was found around blood vessels, and occasionally in the islets. In the rat pancreas, a few GIR nerves were seen also after chemical sympathectomy. We conclude that intrapancreatic GIR nerves also occur in the mouse and the rat. These findings suggest that many of the GIR nerves are adrenergic but that non-adrenergic, possibly intrinsic or sensory GIR nerves exist as well in both the mouse and the rat pancreas.

Adrenergic Fibers

Osteoclasts: structure and function.

Osteoclasts are multinucleated giant cells showing specialized membrane structures, clear zones and ruffled borders, which are responsible for the process of bone resorption. These cells arrive at the resorption site via the bloodstream as mononuclear cells, derived from haemopoietic precursors in the spleen or bone marrow, which fuse prior to resorption. The osteoclast may share an early progenitor cell, the granulocyte macrophage colony-forming unit (GM-CFU) with monocytes, macrophages and granulocytes, implying that osteoclasts share the pluripotent haemopoietic stem cell with all other haemopoietic cells. In the past, elucidation of the structure of these cells relied upon traditional ultrastructural techniques. Transmission electron microscopic studies revealed details of the unique ultrastructure of these cells and, in combination with stereological techniques, showed the response of cells to various hormonal stimuli. Scanning electron microscopy not only demonstrated the surface appearance of osteoclasts, and their predilection for spreading on various substratum components, but has also been used as an adjunct in resorption assays in which areas of resorption lacunae are measured as indicators of cell activity. Recent advances in fields such as immunocytochemistry and freeze fracture techniques have contributed towards a more detailed delineation of antigenic profile, cytoskeletal structure and localization of enzymatic pathways. The osteoclast is subject to extensive regulatory mechanisms and it has been established that the osteoblast plays a major rôle in mediating the effects of osteotropic hormones and local mediators on these cells. Hence, research aimed at elucidating the coupling mechanisms between these two cells may result in new therapies for bone disease.

Animals