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Biomedical subjects

R Komel

Publications and source records attributed to R Komel.

At least 37 records · Page 2Linked to original sources

Mutational analysis of 30 Slovenian cystic fibrosis patients compared to known Slovenian and European CF mutation spectra.

More than 800 mutations have been indentified in the CFTR gene. This vast mutation diversity makes the search for molecular defects in cystic fibrosis difficult. Out of 100 Slovenian CF families, we have screened 30, using DGGE and SSCP as mutation detection techniques, while the remaining 70 have been studied previously. Together our and the previous studies have been able to indentify 18 CF mutations which cover 77.6% of the CF alleles in those families. The relative frequency of deltaF508 is 62.7% which is significantly higher than the average reported for the Mediterranean South European region (51.6%). At the same time, significant differences in mutation frequencies were found for the G542X, R1162X, W1282X, N1303K and 3905insT mutations. Several, otherwise rare mutations have been detected, such as: I148T, Q552X, 457TAT-->G, R1006H, 2907delTT, 3667ins4, A559T and G576A. An interesting fact is that A559T was so far found mostly in CF patients of African-American origin. These results imply that a high heterogeneity of CF mutations occurs within the small population of Slovenia, consisting only of 2 million inhabitants. In view of the spectrum and frequencies of detected mutations, Slovenian population expresses characteristics of Mediterranean and central European countries, and at the same time shows also distinctive differences and unique region specific CF mutations (Q685X, D192G, S4X).

Alleles↗

Nonradioactive northern blotting for the determination of acetylcholinesterase mRNA. Comparison to the radioactive technique.

A sensitive nonradioactive northern blotting for the detection of acetylcholinesterase mRNA in mammalian tissues is described and compared to its radioactive version. Best results were obtained if digoxigenin labeled RNA probe was used for hybridization and CDP-Star, a chemiluminescent alkaline phosphatase substrate, for detection. The described nonradioactive technique for acetylcholinesterase mRNA determination is as sensitive as the radioactive one, but requires no protection against radiation and is less time consuming. Because of higher stability of the labeled probe, nonradioactive technique is also more convenient from the standpoint of experimental planning.

Acetylcholinesterase↗

Can hTNF-alpha be successfully produced and secreted in filamentous fungus Aspergillus niger?

A gene-fusion expression strategy was applied for the heterologous expression of hTNF-alpha in A. niger AB1.13. The TNF-alpha gene was fused with the A. niger glucoamylase GII form as a carrier-gene, behind its transcription control and secretion signal. The protein was expressed in the cells in the form of a glucoamylase-fusion protein, but was not present in the culture medium. From the expression of two hTNF-alpha analogues, LK 811 (Cys95/148) and LK 802 (Cys95/148, His107/108) respectively, we concluded that oligomerisation was not the critical point for secretion of hTNF-alpha in A. niger, but more probably improper folding already at the stage of monomer formation, or even incorrect processing of the molecule during the secretion pathway.

Amino Acid Sequence↗

Interaction trap experiment with CDC6.

CDC6 is an essential gene of yeast Saccharomyces cerevisiae. Although DNA sequence of the gene is available for a long time, biochemical function of Cdc6 protein in the cell cycle remains unclear. Using the interaction trap experiment we were looking for proteins interacting specifically with Cdc6. Four gene products interacting with Cdc6 were detected. By sequence analysis we found that ECM11 codes for the protein involved in the cell wall synthesis, YNL201 codes for the protein of unknown function, probably involved in the carbon metabolism, YOR279 codes for protein of completely unknown function with no significant similarity with any known protein, and the interaction with Ty1 retrotransposition element was also found. The strongest interaction with Cdc6 bait measured as beta-galactosidase activity was observed with ECM11 and YNL201; YOR279 interacts slightly weaker. The weakest beta-galactosidase activity was obtained by Ty1A element. The strongest suppression of cdc6-1 mutation was observed by Ty1A element, the slight one with ECM11 and YNL201 but no suppression of thermosensitive mutation was detected for YOR279.

Cell Cycle Proteins↗

Expression of human lymphotoxin alpha in Aspergillus niger.

A gene-fusion expression strategy was applied for heterologous expression of human lymphotoxin alpha (LTalpha) in the Aspergillus niger AB1.13 protease-deficient strain. The LTalpha gene was fused with the A. niger glucoamylase GII-form as a carrier-gene, behind its transcription control and secretion signals. Special attention was paid to the influence of different codon usage on secretion of protein. In the case of human tumor necrosis factor alpha (TNFalpha) a dramatic change of secretion has been observed when human cDNA sequence was used instead of synthetic E. coli biased codons. In the case of LTalpha such a change of codon usage brought improvement at the RNA level, however, no increase in the quantity of secreted protein was observed, due to the proteolitic activity of the host organism. The estimated yield of secretion of LTalpha from A. niger into the soya medium was 50 pg l(-1) of culture.

Artificial Gene Fusion↗

Biotransformation of steroids by the fission yeast Schizosaccharomyces pombe.

The fungal biotransformation of steroids is of applied interest due to the economic importance of such stereo- and regiospecific reactions and also in the context of ergosterol pathway engineering to produce vitamin D and steroidal products. In Schizosaccharomyces pombe no steroid hydroxylation as is found in filamentous fungi was observed, but a cytosolic NAD(H)/NADP(H)-dependent hydroxysteroid dehydrogenase activity was identified. Progesterone was reduced at the delta 4 double bond (in vivo only) as well as at the C-3 and C-20 keto groups. Testosterone and 4-androstene-3,17-dione were interconverted and 5 alpha-pregnane-3,20-dione and 5 beta-pregnane-3,20-dione were reduced to 3-hydroxy products. The reactions were sometimes reversible and showed regio- and stereo specificity. In S. pombe more than one steroid dehydrogenase homologue is likely to occur, as has been observed in Saccharomyces cerevisiae. Our findings indicate that genes encoding soluble proteins should be examined as candidates for actual steroid dehydrogenase activity.

Biotransformation↗

Control levels of acetylcholinesterase expression in the mammalian skeletal muscle.

Protein expression can be controled at different levels. Understanding acetylcholinesterase (EC. 3.1.1.7, AChE) expression in the living organisms therefore necessitates: (1) determination and mapping of control levels of AChE metabolism; (2) identification of the regulatory factors acting at these levels; and (3) detailed insight into the mechanisms of action of these factors. Here we summarize the results of our studies on the regulation of AChE expression in the mammalian skeletal muscle. Three experimental models were employed: in vitro innervated human muscle, mechanically denervated adult fast rat muscle, and the glucocorticoid treated fast rat muscle. In situ hybridization of AChE mRNA, combined with AChE histochemistry, revealed that different distribution patterns of AChE, observed during in vitro ontogenesis and synaptogenesis of human skeletal muscle, reflect alterations in the distribution of AChE mRNA (Z. Grubic, R. Komel, W.F. Walker, A.F. Miranda, Myoblast fusion and innervation with rat motor nerve alter the distribution of acetylcholinesterase and its mRNA in human muscle cultures, Neuron 14 (1995) 317-327). To study the mechanisms of AChE mRNA loss in denervated adult rat skeletal muscle, we exposed deproteinated AChE mRNA to various subcellular fractions in vitro. Fractions were isolated from the normal and denervated rat sternomastoideus muscle. We found significantly increased, but non-specific AChE mRNA degradation capacities in the three fractions studied, suggesting that increased susceptibility of muscle mRNA to degradation might be at least partly responsible for the decreased AChE mRNA observed under such conditions (K. Zajc-Kreft, S. Kreft, Z. Grubic, Degradation of AChE mRNA in the normal and denervated rat skeletal muscle, Book of Abstracts, The Sixth International Meeting on Cholinesterases, La Jolla, CA, March 20-24, 1998, p. A3.). In adult fast rat muscle, treated chronically with glucocorticoids, we found the fraction of early synthesized AChE molecular forms to be reduced and AChE mRNA unchanged. This observation is consistent with the explanation that translation and/or early post-translational processes are impaired under such conditions (M. Brank, K. Zajc-Kreft, S. Kreft, R. Komel, Z. Grubic, Biogenesis of acetylcholinesterase is impaired, although its mRNA level remains normal, in the glucocorticoid-treated rat skeletal muscle, Eur. J. Biochem. 251 (1998) 374-381). The AChE mRNA level is therefore important but not the only control level of AChE expression in the mammalian skeletal muscle.

Acetylcholinesterase↗

Screen of 55 Slovenian haemophilia A patients: identification of 2 novel mutations (S-1R and IVS23+1G-->A) and discussion of mutation spectrum. Mutation in brief no. 241. Online.

Using polymerase chain reaction, single-stranded conformational polymorphism (SSCP), TaqI restriction analysis and direct sequencing, exons 1, 7, 8, 9, 12, 13, 14, 18, 22, 23, 24, and 26 of the factor VIII gene were screened for point mutations in 55 Slovenian haemophilia A patients. In eighteen patients eleven different mutations were found; one (in six patients) in exon 26, one (in two patients) in exon 24, two in exon 23, one in intron 23, one in exon 18, one in exon 12, one in exon 8, two (1 + 1 in two patients) in exon 7 and one in exon 1. Of the mutations detected one has recently been reported by us (Q602X), and two are novel; S-1R in exon 1 and IVS23+1G-->A in intron 23.

Factor VIII↗

VDR genotype and response to etidronate therapy in late postmenopausal women.

Twenty-four late postmenopausal women with osteoporosis were studied. The patients were separated in three subgroups according to the BsmI polymorphism of the vitamin D receptor (VDR) gene: BB (n = 8), Bb (n = 10) and bb (n = 6). They did not differ in age (mean ages were 66.0 years, 65.9 years and 63.9 years, respectively), years after menopause (18.7 years, 18.1 years and 18.4 years) or body weight (64.9 kg, 65.3 kg and 63.8 kg), the variables known to be associated with bone mineral density (BMD). The results show that the response to antiresorptive bisphosphonate therapy in combination with calcium supplementation is modified by VDR genotype. The lumbar spine BMD increased significantly faster in the BB and Bb groups (7.3% and 7.0%, respectively) compared with the bb group (2.5%) during 1 year of cyclic etidronate therapy (400 mg/day) and calcium supplementation (1000 mg/day). The biochemical marker of bone resorption (urinary hydroxyproline excretion) as well as the bone formation marker (serum levels of osteocalcin) decreased during the treatment. With respect to VDR genotype, a significantly higher decrease in osteocalcin level was observed in bb as compared with BB subjects. We conclude that the VDR genotype is involved in an individual's response to cyclic etidronate therapy with calcium supplementation.

Aged↗

Induction of steroidal hydroxylase activity by plant defence compounds in the filamentous fungus Cochliobolus lunatus

We investigated the hypothesis that the endogenous role of the commercially important inducible steroid hydroxylase cytochrome P450s of fungi was in defense against plant toxophores/secondary metabolites. Two plant defense compounds, the aglycones tomatidine and solanidine, the steroidal glycoalkaloid alpha-tomatine and the triterpene saponin beta-escin were tested as inducers of 11beta/14alpha-steroid hydroxylase in the filamentous fungus Cochliobolus lunatus. The extracts of saponins from the roots of Primula veris and green oat leaves were also tested as inducers of 11beta/14alpha-hydroxylation activity in progesterone biotransformation with the same fungus. Induction of steroid hydroxylase and inhibition of activity in some cases support our hypothesis that their endogenous function is in biochemical defence against secondary metabolites. 4-Pregnene-3,11,20-trione was added as a substrate for biotransformation with C. lunatus. We isolated from culture broth 14alpha-hydroxy-4-pregnene-3,11,20-trione, and the hitherto unreported compounds, 7alpha,14alpha-dihydroxy-4-pregnene-3,11,20-trione and 7alpha-hydroxy-pregna-4,8(14)-diene-3,11,20-trione.

Journal Article↗

Biogenesis of acetylcholinesterase is impaired, although its mRNA level remains normal, in the glucocorticoid-treated rat skeletal muscle.

Acetylcholinesterase (AChE) is responsible for the hydrolysis of acetylcholine in the neuromuscular junction and other cholinergic synapses. Insight into the mechanisms controlling AChE expression in skeletal muscle is important for understanding formation, plasticity, and various dysfunctions of the neuromuscular junction. We have investigated the mechanisms responsible for the decreased AChE activity in the fast rat sternomastoideus muscle after chronic glucocorticoid treatment. Under such conditions fast skeletal muscles become atrophic and loose 30-40% of their AChE activity. In order to establish at which level synthesis of AChE is affected by glucocorticoids, we studied the effects of chronic dexamethasone treatment at both AChE mRNA and mature enzyme levels. Reduced rate of AChE recovery after subtotal irreversible AChE inhibition was observed during the first week of dexamethasone treatment, but not later. Statistical analyses of four independent northern blots revealed unchanged AChE mRNA levels. At the same time, we observed more than 60% decrease in the (G1+G2)/A12 ratio of molecular forms at the expense of G forms. It has been generally accepted that globular G1 and G2 molecular forms are synthesized in the rough endoplasmic reticulum as precursors of asymmetric (A) AChE forms, assembled in the Golgi apparatus. Reduced levels of G1 and G2 AChE forms, in combination with unchanged AChE mRNA, are therefore consistent with the reports demonstrating that glucocorticoids downregulate muscle protein synthesis at the translational level. Our findings support but not entirely prove the concept that impaired translation and/or posttranslational control are the primary cause of decreased AChE activity in the glucocorticoid-treated muscle.

Acetylcholinesterase↗

Analysis of nine short tandem repeat (STR) loci in the Slovenian population.

A polymerase chain reaction (PCR)-based short tandem repeat (STR) system consisting of nine loci has recently been introduced in Slovenia for use in routine forensic identity testing. Fluorescently labelled PCR products were analysed using an ABI PRISM 310 Genetic Analyzer. The STR loci analysed exhibit between 6 and 14 observed alleles per locus and have a combined matching probability of 2.3 x 10(-10).

Alleles↗

CYP17 gene analysis in hyperandrogenised women with and without exaggerated 17-hydroxyprogesterone response to ovarian stimulation.

Nine patients with polycystic ovary syndrome (PCOS) and exaggerated serum level of 17-hydroxyprogesterone (17-OHP) response to gonadotropin (GnRH) agonist stimulation, and seven patients with PCOS, but normal 17-OHP response have been analysed for possible linkage of PCOS with genetic defects on the 17 alpha-hydroxylase/17,20-lyase gene (CYP17). A portion of the regulatory and the entire coding domain for this enzyme have been analysed by PCR-SSCP analysis. Samples have been also screened for the previously reported -34 bp polymorphism, which creates a new SP1-type promoter site, but was excluded as the primary genetic defect. We have varied gel concentrations, reduced running temperatures, added glycerol to polyacrylamide gels and performed electrophoresis on longer gels in order to improve the resolving power of SSCP. Screening of the CYP17 gene revealed no mutations associated with the disease in the examined group of patients. Also, the -34 bp polymorphism proved to be equally distributed among patient and control samples, which in our case were non-related. The results indicate that, when germline mutations in question, CYP17 may be excluded as a candidate gene for these subtypes of PCOS.

17-alpha-Hydroxyprogesterone↗

Myoblast fusion and innervation with rat motor nerve alter distribution of acetylcholinesterase and its mRNA in cultures of human muscle.

To elucidate the mechanisms underlying acetylcholinesterase (AChE) localization, we analyzed the distribution of AChE and Ache mRNA during myogenesis in cocultures of human muscle and fetal rat spinal cord. We observed a temporal coincidence in alterations of AChE localization and nuclei expressing the message, suggesting developmental regulation at the mRNA level. Nonuniform mRNA staining among nuclei suggests asynchronous regulation, also supporting an earlier proposal that transcription proceeds intermittently. Asynchrony seems to be overridden by generally acting factors during myoblast fusion, when message is up-regulated, and at the onset of muscle contractions, when it becomes restricted to some nuclei in the junctional region and focal patches of AChE appear near nerve contacts. Coincidence of mRNA down-regulation and synthesis of stable basal lamina-bound AChE suggests coordinated adaptation, so that sufficient enzyme may be derived from low message levels.

Acetylcholinesterase↗

Bacillus licheniformis bacitracin-resistance ABC transporter: relationship to mammalian multidrug resistance.

The nucleotide sequence of the Bacillus licheniformis bacitracin-resistance locus was determined. The presence of three open reading frames, bcrA, bcrB and bcrC, was revealed. The BcrA protein shares a high degree of homology with the hydrophilic ATP-binding components of the ABC family of transport proteins. The bcrB and bcrC genes were found to encode hydrophobic proteins, which may function as membrane components of the permease. Apart from Bacillus subtilis, these genes also confer resistance upon the Gram-negative Escherichia coli. The presumed function of the Bcr transporter is to remove the bacitracin molecule from its membrane target. In addition to the homology of the nucleotide-binding sites, BcrA protein and mammalian multidrug transporter or P-glycoprotein share collateral detergent sensitivity of resistant cells and possibly the mode of Bcr transport activity within the membrane. The advantage of the resistance phenotype of the Bcr transporter was used to construct deletions within the nucleotide-binding protein to determine the importance of various regions in transport.

ATP-Binding Cassette Transporters↗

Progesterone metabolism by the filamentous fungus Cochliobolus lunatus.

Studies of Cochliobolus lunatus m118 steroid metabolism by thin-layer chromatography, mass spectrometry and NMR spectroscopy revealed that the fungus hydroxylates progesterone at positions 7 alpha, 11 beta and 14 alpha, and oxidizes the 11 beta-hydroxy group to the ketone. The 1H NMR spectra of two of the steroid metabolites, 11 beta,14 alpha-dihydroxyprogesterone and 11-oxo-14 alpha-hydroxyprogesterone, are reported for the first time. It is still not known if all the hydroxylation reactions are performed in C. lunatus by a single, non-specific, steroid hydroxylase, structurally different from the 11 beta-hydroxylase found in higher eucaryotes, or if different forms of the enzyme are involved.

Ascomycota↗