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Biomedical subjects

W Krone

Publications and source records attributed to W Krone.

At least 109 records · Page 6Linked to original sources

Changes in plasma norepinephrine concentration and thrombocyte alpha 2-adrenoceptor density during long-term antihypertensive therapy with nitrendipine and captopril.

Antihypertensive drugs influence the sympathetic nervous system in different ways that may cause adverse or beneficial effects. We treated 48 hypertensive patients with either nitrendipine (10-20 mg twice daily, b.i.d.) or captopril (25-50 mg b.i.d.) for 16 weeks to evaluate changes in plasma catecholamines, platelet alpha 2- and lymphocyte beta 2-adrenoceptors. Blood pressure (BP) decreased from 153/95 to 135/87 mm Hg with captopril and from 155/99 to 137/89 mm Hg with nitrendipine. Treatment with nitrendipine significantly stimulated plasma norepinephrine (NE) from 327 +/- 37 to 446 +/- 50 pg/ml, and treatment with captopril resulted in a significant reduction in platelet alpha 2-adrenoceptor density from 265 +/- 39 to 171 +/- 26 fmol/mg protein. Despite having equal BP-lowering properties, captopril and nitrendipine have different effects on the sympathetic nervous system. Stimulation of plasma NE during long-term treatment with nitrendipine may contribute to possible adverse effects, whereas reduction in alpha 2-adrenoceptors induced by captopril may contribute to the vasodilating effect of angiotensin-converting enzyme (ACE) inhibition.

Adult↗

Plasma catecholamines and adrenoceptors in young hypertensive patients.

An elevated sympathoadrenal tone and an imbalance in postsynaptic alpha- and beta-adrenoceptor function are discussed as factors in the pathogenesis of essential hypertension. This study examined plasma catecholamines, thrombocyte alpha2-adrenoceptors and lymphocyte beta2-adrenoceptors in 16 young patients with newly detected essential hypertension and 26 normotensive age matched controls (27.1 +/- 4.5 vs. 24.8 +/- 2.8 years; NS). Plasma noradrenaline (276 +/- 34 vs. 216 +/- 18 pg/ml, P < 0.05) and plasma adrenaline (96 +/- 15 vs. 31 +/- 4 pg/ml, P < 0.0001) were significantly elevated in hypertensive patients. Thrombocyte alpha2-adrenoceptor density was only nonsignificantly decreased (230 +/- 37 vs. 311 +/- 36 fmol/mg protein, NS), whereas lymphocyte beta2-adrenoceptor density was markedly reduced (15.3 +/- 2.3 vs. 22.6 +/- 1.8 fmol/mg protein, P < 0.01) in hypertensive patients. Elevated plasma catecholamines are consistent with a pathophysiological role for increased sympathetic neural activity in young hypertensive patients. Assuming that results of adrenoceptor studies on blood elements are applicable on vascular receptors, our results are consistent with an imbalance of postsynaptic adrenoceptor functions which promotes the pressor effects of the sympathetic system.

Adult↗

An in-frame insertion in exon 3 and a nonsense mutation in exon 2 of the insulin receptor gene associated with severe insulin resistance in a patient with Rabson-Mendenhall syndrome.

We have studied the structure and function of the insulin receptor in a patient (PK) with severe insulin resistance and Rabson-Mendenhall syndrome. Insulin binding to cultured fibroblasts from PK was almost not detectable and insulin-induced insulin receptor autophosphorylation and glucose uptake was abolished. The structure of the receptor gene was analysed by sequencing amplified products of the 22 exons with the flanking intron regions directly as well as after subcloning in pUCBM20 plasmids. Two mutant alleles of the insulin receptor gene were detected. One allele contains in-frame 12 additional base pairs in exon 3 coding for the amino acids Leu-His-Leu-Val located between Asp-261 and Leu-262 in the receptor's extracellular domain, being the first report of an insertion mutation of the insulin receptor gene. In the other allele Arg-86 in exon 2 is changed into a stop codon. Therefore, PK is compound heterozygous at the insulin receptor locus. Direct cDNA sequencing indicates that both mutant alleles are expressed in the patient's fibroblasts. Studies of the parents' fibroblasts revealed that PK inherited the insertion mutation from the father and the nonsense mutation from the mother. Insulin binding to fibroblasts of the mother was reduced (63% of control cells) and hormone binding to the father's cells shows a larger reduction (37% of control cells), but less severe than the patient's cells (11% of control). This investigation provides further evidence that the Rabson-Mendenhall syndrome is causally related to mutations in the insulin receptor gene.

Amino Acid Sequence↗

Increased amount and contour length distribution of small polydisperse circular DNA (spcDNA) in Fanconi anemia.

Small polydisperse circular DNA (spcDNA) in Fanconi anemia (FA) was analyzed from cultured fibroblast-like cells by electron microscopy. Application of the mica-press adsorption technique for the semi-quantitative determination of spcDNA amounts to three FA and three normal control skin-derived fibroblast strains revealed 85-fold increased levels of spcDNA in the FA cells. An even higher excess over controls was suggested when the FA fibroblasts were propagated for up to 11 serial in vitro passages, consistent with the short replicative life-span of primary FA cells and their rapid transition into a poorly dividing state, in which spcDNA reportedly further increases. In addition, contour length distributions of gradient-purified spcDNA preparations from five FA fibroblast strains were compared with those from five normal control strains. Mean spcDNA contour lengths were significantly greater in the FA than in the control cells. The reported findings of increased spcDNA amounts and sizes in FA coincide with a similar association of chromosome instability and abnormal spcDNA formation previously observed in cultured cells derived from angiofibromas in tuberous sclerosis. Circumstantial evidence from the present study in the paradigmatic chromosome breakage syndrome FA further supports the suggestion that a common mechanism underlies chromosome instability and the surplus generation of spcDNA. Notably, this apparent mechanism is functional in homonuclear primary cell strains with a distinct inherited basis of their chromosome instability, and is not restricted to heteroploid and neoplastoid cell lines.

Adolescent↗

Molecular biology of insulin resistance.

Insulin resistance is an essential feature of a great variety of clinical disorders, like diabetes mellitus, obesity, essential hypertension, and is primarily due to a defect in hormone action at the cellular level. In the past decade application of novel research techniques including recombinant DNA technology have paved the way to understand the mechanisms of insulin action and its alterations at the molecular level. The first step in insulin action is the activation of the insulin receptor. The insulin receptor is a tetrameric protein consisting of two extracellular alpha- and two transmembrane beta-subunits. Binding of insulin to the alpha-subunit causes autophosphorylation of the intracellular beta-subunit region on tyrosine residues thereby activating the receptor. How the hormonal signal is subsequently transduced within the cell is still quiet unclear. The activated insulin receptor appears to couple to cytosolic receptor substrates which can affect different signaling cascades eliciting the pleiotropic hormone response on cell metabolism and growth. Most proteins involved in the signal transduction pathway of insulin are not known yet, but each of them might play a role in the various forms of insulin resistance. Taking the insulin receptor as an exemplary protein involved in insulin action we review molecular mechanisms regulating insulin receptor activity, gene expression, and the role of natural occurring insulin receptor gene mutations in patients with insulin resistant diabetes mellitus. It is outlined how the combination of both clinical medicine and molecular biology not only helps to understand insulin action and the pathogenesis of insulin resistance, but also leads to new avenues in the differential diagnosis, therapy, and possibly prevention of this heterogenous but most frequent metabolic and endocrine disorder.

Gene Expression↗

[Dyslipoproteinemia and metabolic syndrome. Effects of insulin resistance and hyperinsulinemia on lipid metabolism].

Insulin resistance and consecutive hyperinsulinemia in individuals with the metabolic syndrome are associated with dyslipidemia. This latter is characterised by hypertriglyceridemia and a diminishment of high-density lipoprotein (HDL) cholesterol in the plasma. In severe forms of insulin resistance, low density lipoprotein (LDL) cholesterol may also be elevated. Hypertriglyceridemia is due to an increase in the rate of synthesis of very low density lipoproteins (VLDL) in the liver, and a reduction in their breakdown by the lipoprotein lipase in non-hepatic tissue. Changes in VLDL metabolism are associated with a reduction in HDL concentrations. In addition, direct effects of insulin on the lipid metabolism have been described. Changes in lipid metabolism due to insulin resistance and hyperinsulinemia may be of significance for the atherosclerosis risk in patients with the metabolic syndrome.

Cholesterol↗

[Does the captopril test improve the diagnosis of primary hyperaldosteronism?].

Plasma concentrations of renin and aldosterone were measured before and 60 min after taking 25 mg captopril in 242 patients with arterial hypertension (124 men, 118 women, aged 51.9 +/- 12.7 years; unilateral aldosterone-producing adrenal adenoma in 8, idiopathic hyperaldosteronism in 16 and essential hypertension in 189). Basal plasma aldosterone levels were twice as high in those with adenoma or hyperaldosteronism (216.9 +/- 99.1 pg/ml and 256 +/- 123 pg/ml, respectively) as in those with essential hypertension (117.7 +/- 115 pg/ml). Basal renin levels in adenoma and idiopathic hyperaldosteronism (1 +/- 0.8 microU/ml and 2.6 +/- 1.9 microU/ml, respectively) were decreased compared with those in essential hypertension (13.1 +/- 14.2 microU/ml). The basal aldosterone/renin ratio was higher in adenoma (436 +/- 370 pg/microU) and idiopathic hyperaldosteronism (615 +/- 950 pg/microU) than in essential hypertension (52.9 +/- 151.3 pg/microU). The sensitivity of this ratio in combination with the aldosterone concentration was 100% for recognizing an adrenal adenoma, its specificity 92.7%. The mean plasma aldosterone level after captopril administration did not change in adenoma patients, but fell to 162 +/- 85 pg/ml (P less than 0.001) in those with idiopathic hyperaldosteronism. These data indicate that the captopril test contributes to distinguishing primary from idiopathic hyperaldosteronism.

Adenoma↗

Analysis of segregation and expression of an identified mutation at the neurofibromatosis type 1 locus.

A previously identified complex mutation, affecting exon 28 of the neurofibromatosis type 1 gene, was employed for the analysis of the expression pattern in primary cultures of neurofibroma cells and melanocytes from a café-au-lait macule of the patient, respectively. Reverse transcription and subsequent polymerase chain reaction amplification of the segment carrying the mutation revealed that both alleles were expressed in both cell types analysed, thus excluding loss of heterozygosity in this particular instance. Segregation of the alleles of the intragenic Alu sequence length-polymorphism disclosed the paternal origin of the mutated allele. Detection of this mutation was also used for presymptomatic direct DNA diagnosis in the younger child of the patient.

Adult↗

Cytogenetic studies of skin fibroblast cultures from a karyotypically normal female with dyskeratosis congenita.

Skin fibroblast cultures from a female patient with dyskeratosis congenita revealed markedly increased frequencies of chromosomal breaks, hypodiploidy, and premature centromere disjunction. The frequencies of mitotic disturbances, like ana- and telophase bridges, lagging chromosomes, and micronuclei were almost as dramatically elevated as in cultures from two severely affected patients with Fanconi anemia. Provided that our patient is representative for an autosomal form of dyskeratosis congenita, this type of the disease seems to be characterized by chromosomal instability with a characteristic pattern of cytogenetic abnormalities.

Adult↗

Human immunodeficiency virus type 1 clones chimeric for the envelope V3 domain differ in syncytium formation and replication capacity.

Chimeric human immunodeficiency virus type 1 (HIV-1) molecular clones differing only in the envelope V3 region were constructed. The V3 regions were derived from two HIV-1 isolates with a non-syncytium-inducing, non-T-cell-tropic phenotype and from four HIV-1 isolates with a syncytium-inducing, T-cell-tropic phenotype. When assayed in SupT1 cells, the two chimeric viruses with a V3 region derived from the non-syncytium-inducing isolates did not induce syncytia and showed a low level of replication. The four chimeric viruses with a V3 region derived from the syncytium-inducing isolates did induce syncytia and replicated efficiently in SupT1 cells. In A3.01 cells, which do not support syncytium formation, the V3 loop affected replication similarly. Upon prolonged culture in SupT1 cells, the phenotype of a non-syncytium-inducing, low-replicating chimeric HIV-1 converted into a syncytium-inducing, high-replicating phenotype. Mutations within the usually conserved GPGR tip of the loop, which were shown to be responsible for the conversion into the syncytium-inducing, high-replicating phenotype, had occurred. In vitro mutagenesis showed that coupled changes of amino acids at both sides of the tip of the V3 loop were able to convert the viral phenotype from non-syncytium-inducing, low replicating into syncytium inducing, high replicating. Our data show that the V3 loop is involved in both syncytium forming and replicative capacity of HIV-1.

Amino Acid Sequence↗

Cholera toxin diminishes tyrosine kinase activity of the insulin receptor.

We have examined the effect of cholera toxin (CT) on the insulin receptor tyrosine kinase. Incubation of intact rat hepatoma cells FaO with CT (1 microgram/ml/2h) inhibited insulin-induced receptor autophosphorylation by 30% in vivo. This effect persisted after receptor purification in vitro. CT did not alter hormone binding of the insulin receptor, indicating that the toxin affects signal transduction of insulin at the level of the receptor kinase. Experiments using chinese hamster ovary (CHO) cells transfected either with the human insulin receptor (HIR) or a mutant lacking the last 43 amino acids of the receptor beta-subunit (HIR delta CT) showed, that the carboxy-terminal tail of the insulin receptor does not play a role in the suppressive effect of the toxin on the insulin receptor kinase.

Animals↗

Pertussis toxin inhibits autophosphorylation and activation of the insulin receptor kinase.

Pertussis toxin is an ADP-ribosyltransferase which alters the function of some of the GTP-binding proteins and inhibits some actions of insulin. In vivo, pertussis toxin (2 micrograms/ml/2h) inhibited insulin-stimulated tyrosyl autophosphorylation of the insulin receptor by 50% in FaO cells, and nearly completely inhibited phosphorylation of the cellular insulin receptor substrate pp185. Similarly, insulin-stimulated autophosphorylation and kinase activity of the insulin receptor purified on wheat germ agglutinin-agarose from pertussis toxin-treated FaO cells was diminished 50%; however, treatment of cells with the catalytically inactive B-oligomer of the toxin had no effect on receptor tyrosine kinase activity in vitro. Pertussis toxin did not alter insulin binding or the cellular levels of ATP, cAMP, and cGMP. Furthermore, immunoprecipitation of the insulin receptor from intact cells with anti-insulin receptor antibodies showed that pertussis toxin did not increase the phosphorylation of serine or threonine residues in the insulin receptor. These results suggest that pertussis toxin can modulate signal transduction of insulin at the level of the insulin receptor kinase.

Animals↗

A small deletion and an adjacent base exchange in a potential stem-loop region of the neurofibromatosis 1 gene.

A single-strand conformational polymorphism found in the DNA of a patient with neurofibromatosis 1 (NF1) was shown to be caused by a deletion of a CCACC or CACCT sequence and an adjacent transversion, located about 500 base pairs downstream from the region that codes for a functional domain of the NF1 gene product. This mutation could also be detected in the patient and in his affected daughter by heteroduplex analysis. The deletion removes the proximal half of a small potential stem-loop and interrupts the reading frame in exon 1. A severely truncated protein with a grossly altered carboxy terminus lacking one third of its sequence is expected to be formed from the mutant allele.

Adult↗