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C Larsson

Publications and source records attributed to C Larsson.

At least 289 records · Page 16Linked to original sources

An okadaic acid-sensitive protein phosphatase counteracts protein kinase C-induced phosphorylation in SH-SY5Y cells.

Protein phosphorylation and subsequent dephosphorylation was studied in digitonin-permeabilized neuroblastoma SH-SY5Y cells by measuring the incorporation of [32P]phosphate into myelin basic protein (MBP). 1,2-Dioctanoyl-sn-glycerol (DOG) and calcium synergistically induced phosphorylation of MBP, which was inhibited by the protein kinase C (PKC) pseudosubstrate peptide (PKC19-36). The phosphorylation increased for 10 min when a net dephosphorylation started to appear. The dephosphorylation was inhibited by okadaic acid. Regardless of calcium concentration, the presence of DOG was necessary for significant effects of okadaic acid on MBP phosphorylation. H7 and staurosporine dose-dependently inhibited the phosphorylation of MBP, induced by DOG and calcium in the presence of okadaic acid. Different PKC pseudosubstrate peptides were applied and all showed an inhibitory effect on the phosphorylation of MBP under these conditions. These results demonstrate the presence, in SH-SY5Y cells, of a protein phosphatase, possibly protein phosphatase 2A, with a high basal activity that counteracts PKC-induced phosphorylation.

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

Exclusion of FAU as the multiple endocrine neoplasia type 1 (MEN1) gene.

The FAU gene (FBR-MuSV associated ubiquitously expressed gene) encodes the ribosomal protein S30 fused with a Ubiquitin-like molecule. The FAU gene is expressed in a wide range of tissues, is evolutionarily conserved, and has putative tumour suppressor activity in vitro. The human FAU gene maps to the long arm of chromosome 11 band q13, close to the PYGM locus. This locus is tightly linked to the Multiple Endocrine Neoplasia type 1 (MEN1) locus. The FAU gene properties, together with its chromosomal localisation on 11q13, make it a candidate gene for MEN1. To test this hypothesis we screened 33 unrelated patients with MEN1 for constitutional genetic alterations in the FAU gene by Southern blot analysis, denaturing gradient gel electrophoresis (DGGE) and in two cases complemented by DNA sequencing to confirm the DGGE data. Furthermore, 10 parathyroid and pancreatic tumours from MEN1 patients and 15 each of sporadic parathyroid and pituitary tumours were similarly examined. In addition, we studied the expression of the FAU gene at the RNA level in 9 MEN1-associated tumours by Northern blot analysis. No FAU gene anomalies could be demonstrated by any of these techniques. We conclude that FAU is not likely to be the MEN1 tumour suppressor gene.

Base Sequence↗

Growth and metabolism of Saccharomyces cerevisiae in chemostat cultures under carbon-, nitrogen-, or carbon- and nitrogen-limiting conditions.

Aerobic chemostat cultures of Saccharomyces cerevisiae were performed under carbon-, nitrogen-, and dual carbon- and nitrogen-limiting conditions. The glucose concentration was kept constant, whereas the ammonium concentration was varied among different experiments and different dilution rates. It was found that both glucose and ammonium were consumed at the maximal possible rate, i.e., the feed rate, over a range of medium C/N ratios and dilution rates. To a small extent, this was due to a changing biomass composition, but much more important was the ability of uncoupling between anabolic biomass formation and catabolic energy substrate consumption. When ammonium started to limit the amount of biomass formed and hence the anabolic flow of glucose, this was totally or at least partly compensated for by an increased catabolic glucose consumption. The primary response when glucose was present in excess of the minimum requirements for biomass production was an increased rate of respiration. The calculated specific oxygen consumption rate, at D = 0.07 h-1, was more than doubled when an additional nitrogen limitation was imposed on the cells compared with that during single glucose limitation. However, the maximum respiratory capacity decreased with decreasing nitrogen concentration. The saturation level of the specific oxygen consumption rate decreased from 5.5 to 6.0 mmol/g/h under single glucose limitation to about 4.0 mmol/g/h at the lowest nitrogen concentration tested. The combined result of this was that the critical dilution rate, i.e., onset of fermentation, was as low as 0.10 h-1 during growth in a medium with a low nitrogen concentration compared with 0.20 h-1 obtained under single glucose limitation.

Ammonium Sulfate↗

Familial isolated hyperparathyroidism: a distinct genetic entity with an increased risk of parathyroid cancer.

Familial isolated hyperparathyroidism (FIHP) is a rare heritable disorder characterized by hypercalcemia, inappropriately high PTH levels, and isolated parathyroid tumors with no evidence of hyperfunction of any other endocrine tissues. To establish whether FIHP exists as a distinct disease entity or represents a variant of any of the known multiple endocrine neoplasia (MEN) syndromes, we tested 19 members of a large, well characterized family with FIHP in which the disease is transmitted through 4 generations in an autosomal dominant fashion. Fourteen DNA markers at 10 polymorphic loci closely linked to the MEN1 locus on the long arm of chromosome 11 and 5 markers close to the MEN2A gene on chromosome 10 were tested using Southern blot analysis and polymerase chain reaction-based techniques. Additionally, two polymorphic markers (Mir1 and Mir2) within the prepro-PTH gene on the short arm of chromosome 11 were analyzed using denaturant gradient gel electrophoresis. Linkage was clearly excluded between FIHP and the MEN1 and MEN2A loci as well as to the PTH gene. Comparison of constitutional and tumor genotypes showed that constitutional heterozygosity was retained for markers in the MEN1 and MEN2A regions as well as to the PTH gene in 4 tumors from 3 affected members. In 1 individual, a parathyroid carcinoma was found after recurrence of hypercalcemia. We, therefore, propose that autosomal dominant FIHP can occur as a genetically and clinically distinct entity with an increased risk of malignant transformation of parathyroid tumors.

Adolescent↗

Structure and chromosomal localization of human insulin-like growth factor-binding protein genes.

The insulin-like growth factor binding proteins (IGFBPs) constitute a structurally related protein family with six known members. We have mapped and regionally localized the genes coding for human IGFBP1, 2, 3, and 4, by in situ hybridization and somatic cell hybrid analysis. The IGFBP2 gene maps to chromosomal region 2q33-q34 whereas the genes for IGFBP1 and 3 are localized in a tail-to-tail fashion on chromosome 7 region p14-p12. The IGFBP4 gene is located in the chromosomal region 17q12-21.1. Structural characterization of the genes coding for IGFBP-1, 2, 3, and 5 showed that the translated parts are divided into four exons. The exons are similar both in size and sequence in all studied genes.

Amino Acid Sequence↗

Evaluation of ethanol effects on PLC signal transduction pathways using cell lines of neuronal origin.

Human neuroblastoma cells SH-SY5Y and neuroblastoma-glioma cells NG 108-15 have been used as models for the elucidation of the effects of ethanol on receptor-mediated phospholipase C activity, c-fos mRNA expression and protein kinase C activity. Cells were exposed to ethanol (0-200 mM) for varying periods up to seven days. Agonist stimulated events were obtained in NG 108-15 cells with bradykinin and in SH-SY5Y cells with carbachol. Chronic ethanol exposure reduced the agonist-stimulated formation of inositol 1,4,5-trisphosphate in NG 108-15 cells and in SH-SY5Y cells. 100 mM ethanol for seven days increased the membrane bound and cytosolic forms of protein kinase C activity in SH-SY5Y cells. Carbachol (1 mM) induced a maximal c-fos mRNA response after 40 minutes in SH-SY5Y cells, an effect that could be mimicked through protein kinase C stimulation by phorbol esters.

Bradykinin↗

Homozygotes for the autosomal dominant neoplasia syndrome (MEN1).

Families in which both parents are heterozygotes for the same autosomal dominant neoplasia syndrome are extremely unusual. Recently, we had the unique opportunity to evaluate three symptomatic siblings from the union between two unrelated individuals affected by multiple endocrine neoplasia type 1 (MEN1). When the three siblings and their parents and relatives were genotyped for 12 markers tightly linked to the MEN1 locus, at 11q13, two of the siblings were found to be homozygotes, and one a heterozygote, for MEN1. With regard to the MEN1 syndrome, no phenotypic differences were observed between the two homozygotes and the heterozygotes. However, the two homozygotes showed unexplained infertility, which was not the case for any of the heterozygotes. Thus, MEN1 appears to be a disease with complete dominance, and the presence of two MEN1 alleles with mutations of the type that occur constitutionally may be insufficient for tumor development.

Adrenal Cortex Neoplasms↗

The leukotriene-receptor antagonist MK-0679 blocks airway obstruction induced by inhaled lysine-aspirin in aspirin-sensitive asthmatics.

Drugs which block the action or formation of the cysteinyl leukotrienes (LTC4, LTD4 and LTE4) inhibit asthmatic responses evoked by allergen, exercise and cold dry air. The purpose of this study was to determine whether the specific leukotriene-receptor antagonist MK-0679 could block the airway obstruction induced by aspirin (acetylsalicylic acid (ASA)) in aspirin-intolerant asthmatics. Eight asthmatics (mean age 45 yrs), with an average history of asthma and ASA-sensitivity of about 10 yrs duration, were subjected to bronchial provocation with lysine-ASA. Baseline ASA-sensitivity was first determined in an open prestudy session by inhalation of cumulative doses of lysine-ASA to establish the dose of ASA decreasing forced expiratory volume in one second (FEV1) by 20% (PD20). Rechallenge with lysine-ASA was performed on two different occasions, 1 h after oral administration of placebo, or 750 mg of MK-0679, under double-blind conditions, in a randomized, cross-over design. Leukotriene formation was estimated by the measurement of urinary LTE4. The lysine-ASA challenge was highly reproducible (geometric mean for group PD20 being identical for the open prestudy and the placebo session), and was associated with a post-challenge increase in urinary LTE4. In contrast, after MK-0679, there was a rightward shift in the dose response relationship for all eight subjects (median shift being 4.4 fold), with three of the subjects failing to produce a 20% decrease in FEV1 despite inhalation of the highest dose of lysine-ASA feasible to deliver.(ABSTRACT TRUNCATED AT 250 WORDS)

Aspirin↗

Linkage analysis with markers on 17q in 29 Swedish breast cancer families.

Recently, a putative breast cancer gene was localized to the long arm of chromosome 17. A collaboration study was undertaken to confirm linkage, to further map the gene, and to determine to what extent breast cancer families are linked to this locus. The Swedish material consisted of 29 breast cancer families in which 68 affected members were studied. Linkage analysis of breast cancer susceptibility was performed with a number of markers on 17q. In this material a weakly positive LOD score in favor of linkage was observed in a subgroup of families with early onset, while no such linkage was observed in a subgroup of families with late onset.

Adult↗

Isolation and mapping of polymorphic cosmid clones used for sublocalization of the multiple endocrine neoplasia type 1 (MEN1) locus.

Multiple endocrine neoplasia type 1 (MEN1) is characterized by neoplasia of the parathyroids, the pancreas, and the pituitary. Tumorigenesis involves unmasking of a recessive mutation at the MEN1 locus, which has been mapped to the centromeric part of chromosomal region 11q. In order to localize the MEN1 gene further and to make its isolation possible, a number of new markers were isolated. Two radiation-reduced somatic cell hybrids were identified that only contained markers close to and flanking the MEN1 region. DNA from these hybrids was used for the construction of a cosmid library, and clones containing human inserts were isolated. In addition, cosmid clones were isolated for locus expansion of 7 other markers that were mapped to the 11q12-13.2 region. The 33 newly isolated clones together with 25 previously published markers from this region were analyzed in a panel of radiation-reduced somatic cell hybrids. From the hybridization pattern, the region was divided into 11 parts. New restriction fragment length polymorphisms were identified in 7 of the newly isolated cosmid clones and in one plasmid. These were then used to sublocalize meiotic cross-overs more precisely in two MEN1 families, thus refining the mapping of the disease gene.

Blotting, Southern↗

Localization of the human insulin-like growth-factor-binding protein 4 gene to chromosomal region 17q12-21.1.

Insulin-like growth-factor-binding proteins (IGFBPs) constitute a family of structurally related proteins that specifically bind insulin-like growth factors and modulate their functions. In this study, the chromosomal localization was determined for the gene encoding IGFBP4, i.e. inhibitory-IGFBP. A polymerase chain reaction (PCR) fragment corresponding to the previously published cDNA sequence was used to isolate overlapping cosmid clones. By fluorescent in situ hybridization to metaphase chromosomes, the IGFBP4 gene was then localized to chromosomal region 17q21-21.1. This result was in agreement with PCR analysis of a panel of somatic cell hybrids.

Base Sequence↗

Complete characterization of a large marker chromosome by reverse and forward chromosome painting.

Marker chromosome are small supernumerary chromosomes that are sometimes associated with developmental abnormalities. Hence, the genes involved in such cases provide an interesting approach to understanding developmental abnormalities in man. As a first step towards isolating such sequences, marker chromosomes need complete characterization. By combining chromosome isolation by flow sorting and the "degenerate oligonucleotide primed - polymerase chain reaction", we have constructed a DNA library specific for a marker chromosome found in a child with severe developmental abnormalities. We used fluorescent in situ hybridization of the library onto normal metaphase spreads ("reverse chromosome painting") and were thus able to determine that the marker consists of the centromeric part of chromosome 7, the telomeric region of the long arm of chromosome 5 and the telomeric region of the short arm of the X-chromosome. Subsequently, we hybridized normal chromosome-specific libraries of the relevant chromosomes onto metaphases containing the marker chromosome ("forward chromosome painting") and could in this manner establish the precise location of the different chromosome regions on the marker chromosome itself. This is a general approach suitable for outlining marker chromosomes in detail, and will aid the identification of the genes involved.

Adult↗

Hereditary breast cancer in Sweden: a predominance of maternally inherited cases.

The family history of breast cancer was studied in 1975 breast cancer patients of all ages. All the patients were found in an ongoing care program for breast cancer patients in the Stockholm area. One hundred and thirty-three families (6.7%) with hereditary breast cancer, 87 (4.4%) families with hereditary breast- and other cancers, and 14 (0.7%) families with the SBLA syndrome were found. There was no association between familiarity and bilateral disease, but familial cases tended to be younger at the time of diagnosis. Determination of the parental origin of the disease gene among the index cases revealed twice as many cases where the disease was maternally transmitted. This might be due to a better prognosis when the predisposing gene is maternally transmitted, and could be explained by parental imprinting or environmental factors influencing the expression of the gene.

Age Factors↗

Contiguous localization of the genes encoding human insulin-like growth factor binding proteins 1 (IGBP1) and 3 (IGBP3) on chromosome 7.

In extracellular fluids the insulin-like growth factors (IGFs) are bound to specific binding proteins (IGBPs). The genes for two members of this protein family have been mapped, the IGBP1 gene to human chromosomal region 7p14-p12 and the IGBP2 gene to region 2q33-q34. In this study, somatic cell hybrid analysis indicated that IGBP3 is also located on chromosome 7. Pulsed-field gel electrophoresis was used to demonstrate the close physical linkage between IGBP1 and IGBP3. Overlapping cosmid clones encompassing these genes were isolated, and restriction endonuclease mapping showed that the genes are arranged in a tail-to-tail fashion separated by 20 kb of DNA. Further characterization of the IGBP1 DNA sequence disclosed a duplication of the intron 3-exon 4 junction within the third intron. In addition, we report RFLPs for ApaLI and TaqI in the IGBP1 locus.

Amino Acid Sequence↗