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Biomedical subjects

G Falk

Publications and source records attributed to G Falk.

At least 37 records · Page 2Linked to original sources

Thrombotic risk factors and oral contraception.

Eighty-one women with a history of thrombosis were classified into three groups: group I (n = 29), women in whom thrombosis developed during oral contraception; group II (n = 33), those who used oral contraceptives (OC) without complications but experienced vascular occlusion in other risk situations; group III (n = 19), women who never used OC. The level of antibodies to anionic phospholipids (PLa), a response to activated protein C (APC), and the presence for the mutation in the coagulation factor V gene causing APC resistance were studied. In the studied groups, APC resistance was present in 14% to 42% of patients. PLa were elevated in about half of APC-resistant patients. The incidence of APC resistance correlated with the recurrency of the thrombotic events within the groups. In most cases it was tightly connected to the mutation in the factor V gene. Women in whom thrombosis developed while they were taking OC (group I) differed from the others, having a remarkable disagreement between the lowest incidence of APC resistance and a relatively increased number of the mutation (14% vs 38%, p < 0.025). This finding suggested that the APC response is flexible. An influence of OC that predisposes a reduction in APC response is discussed.

Adolescent↗

Characterization of the von Willebrand factor gene (VWF) in von Willebrand disease type III patients from 24 families of Swedish and Finnish origin.

Twenty-four patients with von Willebrand disease type III were screened for mutations in the von Willebrand factor (VWF) gene using the PCR technique, followed by direct sequencing. More than 250 kb of genomic DNA were sequenced, including the promoter and coding regions (52 exons) of the VWF gene from 24 patients. In addition to the previously reported mutations of a single cytosine deletion in exon 18 and the nonsense mutations in exons 28, 32, and 45, nine new mutations were detected: two nonsense mutations in exons 15 and 16, one allele with a thymidine insertion in exon 14, one allele with a cytosine insertion in exon 28, one 20-bp deletion in exon 15, one mutation in the donor splice site of exon 43, and three missense mutations in exons 28, 49, and 51. Forty-two mutant chromosomes were identified (42/48); 11 probands are homozygous for the mutations, and 8 are compound heterozygous. In addition, a new subfamily of the Alu sequence in the promoter region and 10 new polymorphisms were identified.

Alleles↗

Behavior of different suture materials in the urinary bladder of the rabbit with special reference to wound healing, epithelization and crystallization.

Five urinary bladder incisions were performed in 16 rabbits and the defects closed by plain catgut 4-0, chromic catgut 4-0, polypropylene 4-0, polyglactin 910 4-0 and polyglactin 910 8-0 in the form of an all-layer suture, thereby obtaining a total of 80 suture sites. The running sutures in 8 animals were reviewed by light microscopy after 1, 2, 7 and 15 weeks, and in 8 additional animals after 3 days, 1, 2, 7 and 15 weeks by scanning electron microscopy. Moreover, we analyzed and compared the autopsy findings on gross inspection, the urinary sediments and urinary cultures of the individual animals. Scanning electron-microscopic evaluations showed that epithelization of the intraluminal suture portions can be accomplished after 3 days already. Reduced suture strength and rapid absorption of the suture material prevent later postoperative incrustations. Light-microscopic inspection of the segments of the bladder wall bearing this suture material suggests that a minor inflammatory tissue response around the suture material--with polyglactin 910 8-0 in particular--is more likely to enhance regeneration of the tunica muscularis and to prevent formation of cysts than seen with a long-standing highly inflammatory tissue response around the suture site of catgut threads. In the animal experiment, the polyglactin 910 suture has shown sufficient firmness and proved to be superior to any other suture material as regards the reaction to foreign bodies and inclination to incrustation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The glutamate-receptor linked cGMP cascade of retinal on-bipolar cells is pertussis and cholera toxin-sensitive.

Whole-cell patch-clamp recordings were obtained from light-responsive on-bipolar cells in retinal slices of the dogfish. Inclusion of the A-subunit of pertussis toxin in the patch-pipette solution resulted in an increase in inward current and membrane conductance, and a block of light-evoked currents of on-bipolar cells. The opposite effect was obtained with the A-subunit of cholera toxin, which blocked light responses, and induced an outward current and a decrease in membrane conductance. These actions were NAD+ dependent. The results show that the G-protein(s) linking glutamate receptors to a cGMP cascade in on-bipolar cells possess sites which are ADP-ribosylated by pertussis and cholera toxins, with no homology to the adenylate cyclase system but possibly with a homology to transducin. Furthermore, inclusion of H-7, a kinase inhibitor in the patch-pipette solution, or of a non-hydrolysable ATP analogue (AMP-PNP) had no effect on light responses, membrane conductance or dark current of on-bipolar cells, suggesting that the components of this cGMP cascade are unlikely to be regulated by protein kinases.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Properties of the cGMP-activated channel of retinal on-bipolar cells.

Whole-cell patch-clamp recordings were obtained from on-bipolar cells in, or isolated from, retinal slices prepared from dogfish retina. The properties of the cGMP-activated conductance of on-bipolar cells were compared with that of rod photoreceptors. The on-bipolar cell cGMP-activated channel was blocked by L-cis-diltiazem, a block which was strongly voltage dependent. However, this channel is not identical with that of photoreceptors. The location of the L-cis-diltiazem blocking site and its accessibility in the channel are not the same as in rods. The voltage dependence of block suggests that the blocking site, although near the intracellular side of the channel, is accessible to the positively charged form of L-cis-diltiazem only from the outward facing side of the channel. Furthermore, in contrast to rod channels, the conductance of the on-bipolar cell channels is unaltered by the removal of external divalent cations.

Aminobutyrates↗

Nucleotide sequence of cDNA clones encoding the beta subunit of mitochondrial ATP synthase from the green alga Chlamydomonas reinhardtii: the precursor protein encoded by the cDNA contains both an N-terminal presequence and a C-terminal extension.

cDNA and genomic clones encoding the beta subunit of mitochondrial ATP synthase from Chlamydomonas reinhardtii have been isolated using heterologous DNA probes from the photosynthetic bacterium Rhodospirillum rubrum. The protein encoded by the cDNA is 79-83% identical to corresponding proteins from higher-plant and mammalian mitochondria, and 75% identical to the R. rubrum protein. It contains both an N-terminal presequence and a unique C-terminal extension. The presequence, which is the first mitochondrial presequence determined in C. reinhardtii, is similar in structure to mitochondrial presequences from other organisms. As chloroplast presequences from C. reinhardtii also share features with mitochondrial presequences from other organisms (L.-G. Franzén et al., FEBS Lett 260 (1990) 165-168), this raises interesting questions about protein targeting to chloroplasts and mitochondria in C. reinhardtii. The possibility that the C-terminal extension is involved in targeting the protein to the mitochondrion is discussed. Southern blot analysis indicates that the protein is encoded by a single-copy gene.

Amino Acid Sequence↗

Retinal on-bipolar cells contain a nitric oxide-sensitive guanylate cyclase.

Retinal on-bipolar cells possess specialized glutamate receptors which are coupled via a G-protein to the control of a cyclic GMP (cGMP) cascade. Whole-cell voltage clamp recordings were obtained from light-responsive on-bipolar cells in retinal slices of the dogfish. Inclusion of nitroprusside in the patch-pipette solution induced effects in on-bipolar cells which were consistent with a rise in intracellular cGMP and thus stimulation of guanylate cyclase (GC) activity. Conversely, the soluble GC inhibitors, methylene blue and ferricyanide, induced effects consistent with a fall in intracellular cGMP. Activators of particulate GC had no effect. We conclude that cGMP synthesis in on-bipolar cells is catalysed by a NO-sensitive cyclase.

Animals↗

Nonsense mutations of the von Willebrand factor gene in patients with von Willebrand disease type III and type I.

von Willebrand disease (vWD) is the most common inherited bleeding disorder in humans. The disease is caused by qualitative and quantitative abnormalities of the von Willebrand factor (vWF). Genomic DNA from 25 patients with vWD type III, the most severe form of the disease, was studied using PCR followed by restriction-enzyme analysis and direct sequencing of the products. Nonsense mutations (CGA----TGA) were detected in exons 28, 32, and 45 by screening of all the 11 CGA arginine codons of the vWF gene. Two patients were found to be homozygous and five heterozygous for the mutation. Both parents and some of the relatives of the homozygous patients carry the mutation. These are the first reported examples of homozygous point mutations associated with the severe form of vWD. In the three heterozygous probands, one of the parents carried the mutation and had vWD type I. Family studies including parents and family members with or without vWD type I indicated that these three heterozygous patients are likely to be compound heterozygous. Twenty-one individuals from these seven families with vWD type I were found to be heterozygous for the mutation.

Adolescent↗

Glutamate receptors of rod bipolar cells are linked to a cyclic GMP cascade via a G-protein.

Whole-cell patch-clamp recordings were obtained from light-responsive on-bipolar cells in retinal slices of the dogfish. Inclusion of the G-protein activator, GTP gamma S, in the intracellular patch solution mimicked the action of glutamate, inducing an increase in net outward current (interpreted as a decrease in inward current), a decrease in membrane conductance and block of light responses. Cyclic GMP (cGMP) in the patch pipette increased inward current and membrane conductance, and blocked light responses. Cyclic AMP had no effect. IBMX, a phosphodiesterase inhibitor, produced the same effect as cGMP, suggesting the presence of a cGMP phosphodiesterase in rod bipolar cells. These results indicate that the glutamate receptors of on-bipolar cells are coupled via a G-protein to regulate intracellular cGMP, which, in turn, results in the opening of sub-synaptic membrane channels. The similarity to phototransduction is striking, and the proposed scheme would account for the high gain in transmission of rod signals to on-bipolar cells.

Animals↗

Giant pericardial cyst.

We report the excision of the largest pericardial cyst yet described. Despite causing collapse of the left lower lobe, and bronchitis, an excellent symptomatic result was obtained.

Adult↗

Reversal and inhibition of cholera toxin-induced secretion in isolated rabbit ileum.

1. Cholera toxin (1 microgram/ml) abolished net fluid absorption by everted sacs of rabbit ileum, leading to net fluid secretion. This action occurred via the toxin-catalysed ADP ribosylation of the stimulatory GTP-binding protein Gs which is linked to adenylate cyclase. Nicotinamide (10 mM), a reaction product of ADP ribosylation, reversed cholera toxin-induced secretion, restoring absorption. Lower concentrations of nicotinamide induced partial reversal. 2. Nicotinamide (1 mM) blocked the secretory action of cholera toxin applied to ileal sacs. This inhibitory action was more effective in the presence of methionine (1 mM). 3. Other inhibitors of ADP ribosylation, benzamide and adenine, blocked the secretory action of cholera toxin. Hypoxanthine, an analogue and metabolite of adenine, was similarly effective. 4. Nicotinamide was not, however, effective in blocking or reversing the secretory action of theophylline (10 mM) or of heat-stable E. coli enterotoxin STa. This indicates that nicotinamide has a highly specific action against ADP ribosylating toxins. 5. It is proposed that nicotinamide reverses the secretory action of cholera toxin by reversing ADP ribosylation, simply by the law of mass action. This counters the established idea that the effects of cholera and other ADP-ribosylating toxins are irreversible under physiological conditions.

Adenine↗

Reliability and validity of a pressure threshold meter in recording tenderness in the masseter muscle and the anterior temporalis muscle.

The reliability and validity of an algometer pressure threshold meter (PTM) was evaluated on 45 individuals, 25 healthy volunteers and 20 patients with craniomandibular dysfunction. Tenderness upon palpation was measured at six points located on the masseter muscle, the anterior temporal muscle, and on the zygomatic arch. The validity of the PTM was evaluated by comparison of the PTM values obtained by one examiner with the finger palpation score obtained by another examiner (Part 1). A statistically significant correlation between PTM values and finger-palpation scores was found at all of the points recorded (p less than 0.05). A statistically significant difference between PTM values was obtained for the symptom-free group and the patient group. The reliability of the PTM was evaluated at six points by repeated recordings at each marked point (Part 2). High reliability coefficients (r = 0.79-0.94) were found at all the points. The study also showed that if the points were located with a certain inaccuracy (1.0 mm less than x less than 2.6 mm), the reliability coefficients were still of the same magnitude. The PTM can be recommended for evaluation of pressure pain thresholds in the masticatory system in clinical and experimental studies.

Adult↗

DNA sequence of a gene cluster coding for subunits of the F0 membrane sector of ATP synthase in Rhodospirillum rubrum. Support for modular evolution of the F1 and F0 sectors.

A region was cloned from the genome of the purple non-sulphur photobacterium Rhodospirillum rubrum that contains genes coding for the membrane protein subunits of the F0 sector of ATP synthase. The clone was identified by hybridization with a synthetic oligonucleotide designed on the basis of the known protein sequence of the dicyclohexylcarbodi-imide-reactive proteolipid, or subunit c. The complete nucleotide sequence of 4240 bp of this region was determined. It is separate from an operon described previously that encodes the five subunits of the extrinsic membrane sector of the enzyme, F1-ATPase. It contains a cluster of structural genes encoding homologues of all three membrane subunits a, b and c of the Escherichia coli ATP synthase. The order of the genes in Rsp. rubrum is a-c-b'-b where b and b' are homologues. A similar gene arrangement for F0 subunits has been found in two cyanobacteria, Synechococcus 6301 and Synechococcus 6716. This suggests that the ATP synthase complexes of all these photosynthetic bacteria contain nine different polypeptides rather than eight found in the E. coli enzyme; the chloroplast ATP synthase complex is probably similar to the photosynthetic bacterial enzymes in this respect. The Rsp. rubrum b subunit is modified after translation. As shown by N-terminal sequencing of the protein, the first seven amino acid residues are removed before or during assembly of the ATP synthase complex. The subunit-a gene is preceded by a gene coding for a small hydrophobic protein, as has been observed previously in the atp operons in E. coli, bacterium PS3 and cyanobacteria. A number of features suggest that the Rsp. rubrum cluster of F0 genes is an operon. On its 5' side are found sequences resembling the -10 (Pribnow) and -35 boxes of E. coli promoters, and the gene cluster is followed by a sequence potentially able to form a stable stem-loop structure, suggesting that it acts as a rho-independent transcription terminator. These features and the small intergenic non-coding sequences suggest that the genes are cotranscribed, and so the name atp2 is proposed for this second operon coding for ATP synthase subunits in Rsp. rubrum. The finding that genes for the F0 and F1 sectors of the enzyme are in separate clusters supports the view that these represent evolutionary modules.

Base Sequence↗

Block of light responses of salamander rods by pertussis toxin and reversal by nicotinamide.

Transducin is the substrate for a pertussis toxin-catalyzed ADP-ribosylation in isolated retinal rod disk membranes [(1984) J. Biol. Chem. 259, 23-26]. The effects of the toxin on the light responses of intact dark-adapted rods were studied. Applied close to a rod outer segment in a retinal slice, pertussis toxin depolarized the rod by a few millivolts and produced a long-lasting depression of light responses, effects which depended on penetration of toxin into rods. Nicotinamide, an inhibitor of ADP-ribosylation, not only blocked the action of the toxin, but also reversed the effects once established. The action of nicotinamide itself on rods indicates the presence of endogenous ADP-ribosyltransferases which may constitute a control system modulating phototransduction. Inhibition of phospholipase C by neomycin had only transient effects indicating that the cGMP, rather than a phosphoinositide, pathway is primary in vertebrate phototransduction. Rapid reversal of pertussis toxin action suggests possible clinical applications of nicotinamide or congeners to the treatment of disease caused by ADP-ribosylating bacterial toxins.

Adenosine Diphosphate Ribose↗

Joro spider venom: glutamate agonist and antagonist on the rod retina of the dogfish.

The venom of the Joro spider, reported to block glutamate action selectively at some glutaminergic synapses, was applied focally to rod horizontal and on-bipolar cells in dark-adapted retinal slices. The venom hyperpolarized horizontal cells in the dark and blocked their responses to light. Depolarization of horizontal cells by ionophoretic pulses of L-glutamate, L-aspartate or kainate was antagonized by the toxin in a slowly reversible manner. These results are consistent with other evidence for glutamate as the rod neurotransmitter acting on a single postsynaptic receptor type on horizontal cells. In contrast, the venom, like glutamate, closed the same ion channels of on-bipolar cells as the transmitter, thereby blocking light responses of on-bipolars. Joro spider toxin distinguishes the glutamate receptor-channel complexes of rod horizontal and on-bipolar cells.

Animals↗