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Biomedical subjects

K Csiszár

Publications and source records attributed to K Csiszár.

At least 19 recordsLinked to original sources

Hyperglycemia enhances DNA fragmentation after transient cerebral ischemia.

Previous histopathologic results have suggested that one mechanism whereby hyperglycemia (HG) leads to exaggerated ischemic damage involves fragmentation of DNA. DNA fragmentation in normoglycemia (NG) and HG rats subjected to 30 minutes of forebrain ischemia was studied by terminal deoxynucleotidyl transferase mediated DNA nick-labeling (TUNEL) staining, by pulse-field gel electrophoresis (PFGE), and by ligation-mediated polymerase chain reaction (LM-PCR). High molecular weight DNA fragments were detected by PFGE, whereas low molecular weight DNA fragments were detected using LM-PCR techniques. The LM-PCR procedure was performed on DNA from test samples with blunt (without Klenow polymerase) and 3'-recessed ends (with Klenow polymerase). In addition, cytochrome c release and caspase-3 activation were studied by immunocytochemistry. Results show that HG causes cytochrome c release, activates caspase-3, and exacerbates DNA fragments induced by ischemia. Thus, in HG rats, but not in control or NGs, TUNEL-stained cells were found in the cingulate cortex, neocortex, thalamus, and dorsolateral crest of the striatum, where neuronal death was observed by conventional histopathology, and where both cytosolic cytochrome c and active caspase-3 were detected by confocal microscopy. In the neocortex, both blunt-ended and stagger-ended fragments were detected in HG, but not in NG rats. Electron microscopy (EM) analysis was performed in the cingulate cortex, where numerous TUNEL-positive neurons were observed. Although DNA fragmentation was detected by TUNEL staining and electrophoresis techniques, EM analysis failed to indicate apoptotic cell death. It is concluded that HG triggers a cell death pathway and exacerbates DNA fragmentation induced by ischemia.

Animals↗

Supravalvular aortic stenosis: a splice site mutation within the elastin gene results in reduced expression of two aberrantly spliced transcripts.

We have screened the elastin gene for mutations responsible for supravalvular aortic stenosis (SVAS) in two large, independently collected families with isolated (nonsyndromic) SVAS. By single-strand conformation polymorphism and heteroduplex analysis, we have identified a C to G transversion within the acceptor splice site of exon 16 in SVAS patients from both families. This mutation segregates in both families with high penetrance of SVAS, and all affected individuals carry the mutation. Haplotype analysis by using closely linked polymorphisms, including a previously unreported BfaI restriction fragment length polymorphism within the 3'-UTR of the elastin gene, indicates that the mutations found in the two apparently non-overlapping kindreds are identical by descent. To study the effect of the mutation on the expression of the mutant allele, we have established a primary skin fibroblast culture from one of the affected individuals. Reverse transcription/polymerase chain reaction analysis of elastin mRNA species indicates that the mutation results in two abnormal elastin mRNA species. One mutant elastin mRNA is generated by the activation of a cryptic splice site that lies within intron 15 and that adds 44 bp of intronic sequence to the sequence encoded by exon 16. This insertion creates a frame shift that results in a 59-amino-acid-long abnormal protein sequence and leads to a termination codon in the mRNA sequence encoded by exon 17. The smaller abnormal mRNA species arises as a consequence of the skipping of exon 16. This study demonstrates, for the first time, the expression of mutant alleles of the elastin gene in patients with isolated SVAS.

Alternative Splicing↗

Analysis of the 5'-upstream regions of the human relaxin H1 and H2 genes and their chromosomal localization on chromosome 9p24.1 by radiation hybrid and breakpoint mapping.

Relaxins are known endocrine and autocrine/paracrine hormones that play a major role in reproduction. In the human there are two relaxin genes, H1 and H2 which share 90% sequence homology within their coding region. The biological and evolutionary significance of two highly homologous and biologically active human relaxins is unknown. In order to achieve a better understanding of the regulatory mechanisms involved in the differential expression of these two genes and to gain insight into their role(s) in the preterm premature rupture of the membranes, we have investigated the properties of their 5'-upstream regions and mapped them both by radiation hybrid and breakpoint mapping into the same chromosome 9p24.1 locus. The 5' ends of these relaxin genes could be divided into a proximal highly homologous segment and a distal non-homologous region. Within the proximal region are contained several putative regulatory elements common to both genes, suggesting a similar regulatory mechanism. The clustering of the relaxin genes within the same chromosomal locus suggests that these genes may be under a common regulation. On the other hand, a distinct gene-specific regulation may also exist for the individual relaxin genes since cis elements specific to each gene were identified at their 5' ends. Moreover, the observed divergence at the distal region of their 5'-upstream sequences may provide the structural features that act as gene-specific transcription regulators. Since the two genes are highly homologous in both their coding and flanking regions, the divergence at the distal region of their 5' ends may be important in the regulation of these genes and in their involvement in the pathology of preterm birth.

5' Untranslated Regions↗

A gene-dosage PCR method for the detection of elastin gene deletions in patients with Williams syndrome.

Williams syndrome (WS) is a multisystem developmental disorder associated with microdeletions at 7q11.23 that involve several genes, including the elastin gene. Using genomic DNA from a panel of normal individuals and WS patients with established hemizygosity of the elastin gene locus, we have developed a quantitative polymerase chain reaction (PCR)-based gene-dosage assay that rapidly detects the loss of one allele of the elastin gene. Using this procedure, we also studied a family in which the proband was previously diagnosed with WS and her mother with a balanced 7q translocation [t(7:11)(q34;q13)]. Using DNA isolated from buccal smears obtained from several individuals in this family we were able to establish normal disomy at 7q in all family members except for the proband, in which we established hemizygosity at the elastin gene locus. We were also able to successfully infer normal disomy in an unborn child in this family. The rapid diagnostic procedure described here may have a variety of applications, including fine mapping of deletion breakpoints at 7q11.23 associated with WS.

Adult↗

[Genetic diagnosis of Williams syndrome].

Williams syndrome is a complex developmental disorder. The major cardiovascular component of Williams syndrome is supravalvular aortic stenosis, a progressive disease that may need surgical repair. Williams syndrome is associated with heterozygous microdeletion in the chromosomal region 7q11.23 encompassing the elastin gene. We have identified a new, highly informative tetranucleotide repeat polymorphism within the human elastin gene. This marker together with other, previously described elastin gene markers was used to show deletion of the elastin gene in nine sporadic Williams syndrome patients from Hungary. Application of polymorphisms within and flanking the elastin gene on chromosome 7 provides a fast, polymerase chain reaction based method for mutational analysis of Williams syndrome patients.

Aortic Valve Stenosis↗

The human lysyl oxidase-like gene maps between STS markers D15S215 and GHLC.GCT7C09 on chromosome 15.

The lysyl oxidase-like (LOXL) gene is a new member of the lysyl oxidase family, a copper-dependent enzyme that is implicated in the crosslinking of collagen and elastin fibers. We have mapped the LOXL gene to chromosome 15q23, between STS markers D15S215 and GHLC.GCT7C09. This position corresponds to the q23 locus, not to the q24-25 locus suggested in a preliminary report.

Chromosome Mapping↗

Antibiotic susceptibility of Bacteroides fragilis group strains in Hungary.

Resistance rates to different antibiotics of 495 Bacteroides fragilis group strains were followed between 1987 and 1994 in Hungary. In 1992 the strains were collected in three different laboratories, whereas during the other periods strains were isolated in one centre. Metronidazole, chloramphenicol, imipenem and amoxicillin/clavulanic acid were the most active drugs. A high level of resistance was observed in 1987 for ampicillin (88% at > 4 mg/L), erythromycin (51% at > 4 mg/L), tetracyclin (53% at > 8 mg/L) and clindamycin (27% at > 4 mg/L). The same level of resistance was seen during the further years for clindamycin and ampicillin. Resistance to cefoxitin increased from 6% to 11% between 1987 and 1993/1994. No differences in resistance rates were observed between the strains collected in the three centers. For 100 strains, the results of the E test were compared with those of the micro-broth dilution test, both being used routinely for testing the antibiotic susceptibility of Bacteroides fragilis group strains in this period.

Journal Article↗

Resistance to beta-lactam antibiotics and beta-lactamase production of Bacteroides, Porphyromonas and Prevotella strains.

Resistance to beta-lactam antibiotics of 183 clinical isolates belonging to Bacteroides, Porphyromonas and Prevotella was tested by a micro-broth dilution MIC method. Beta-lactamase production was screened by using nitrocefin sticks. Prevalence of resistance to different beta-lactam antibiotics was higher among the Bacteroides strains other than B. fragilis parallel with a beta-lactamase production (88% and 96%, respectively). Resistance was observed less frequently among Porphyromonas and Prevotella strains. Cefoxitin resistance was 11.5% and amoxicillin/clavulanic acid 3.5% among Bacteroides isolates, whereas no resistance was found to these antibiotics among the Porphyromonas and Prevotella strains. All strains tested were susceptible for imipenem. Beta-lactamase production of selected isolates was tested quantitatively. Beta-lactamase of B. fragilis 1 and B. levii differed in their isoelectric points, substrate profiles and inhibition by clavulanic acid, sulbactam and tazobactam.

Anti-Bacterial Agents↗

Bacteriocin-like antagonism in Yersinia enterocolitica.

A total of 121 Yersinia enterocolitica O3 isolates from patients with gastroenteritis and 37 Y. enterocolitica reference strains with different O antigens were tested for bacteriocine production and sensitivity. By using cross-streaking method strains belonging to serogroups of O5; O7,8; O7,13; O11; O11,23; O13,27; O17; O19,8 and O34 produced bacteriocin-like substances. None of the Y. enterocolitica O3 strains produced bacteriocin-like material and most of them were uniformly sensitive against the bacteriocin-like material produced by strains of serogroups O7,8; O7,13; O13,27 and O19,8. By sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) significant differences were demonstrated in the whole cell protein patterns of Y. enterocolitica reference strains belonging to different serogroups in the range of 33-47 kilodalton (kDa). Out of the ten examined bacteriocin-like material producer strains only one strain harboured a plasmid of about 60 megadalton (MDa).

Antibiosis↗

Clonal distribution of K1 and K5 antigen possessing Escherichia coli isolates.

A significant difference was observed in the occurrence of the examined markers (Col+, ColV+, Hly+, Aer+, AbR) and in the plasmid carrier state between strains with and without K1 and K5 antigens. Plasmids of the same size were harboured by serotypes possessing K1 and K5 antigens, e.g. among O1: K1: H- strains plasmids of 60-79 Md, among O1: K1: H7, O18ac: K1: H7, O45: K1: H7 and O83: K1: H- strains plasmids of 80-95 Md were frequent. The average plasmid number was higher in K1 strains than in K5 strains. In serogroup O1 the frequency of the plasmid carrier state was associated with the O serogroup and not with the K antigen. The plasmid number in K5 of serogroups O6 and O18 was lower than in K5- strains. Plasmids of 80-95 Md were predominant among the strains derived from blood and cerebrospinal fluid, whereas these plasmids were rare among the K1 and K5 strains isolated from other sources. Plasmids of 60-79 Md were frequent among strains derived from different sources. The 30-40 Md plasmids were relatively frequent among strains isolated from urine. In contrast with literary data, O1: K1: H-, O1: K1: H7 and other frequent serotypes consisted of different clones. Different clones were found within a single serotype, too.

Anti-Bacterial Agents↗

Regulatory elements downstream of the promoter of an rRNA gene of E. coli.

Previously we have shown that plasmid constructs carrying a reporter gene fused to the P2 promoter of the E. coli rrnB gene exhibited a strange two-phase kinetics of expression depending on the physiological conditions of the cell if a short DNA region downstream of the promoter was present between the promoter and the reporter gene (Lukacsovich et al. (1987) J. Bacteriol. 169, 272-277). Insertion of a synthetic oligonucleotide corresponding to the first half of this region into constructs where the reporter directly follows the promoter, leads to a complete block of expression in vivo, while in vitro--in a purified system--transcription is not inhibited. Band-shift experiments indicate that the putative regulatory region downstream of the promoter specifically binds protein(s) present in total bacterial extracts.

Base Sequence↗

Intestinal mast cells and neutrophil chemotactic activity of serum following a single challenge with gluten in celiac children on a gluten-free diet.

The number of one subtype of mast cells (formalin fixation, toluidine blue staining), cells of the lamina propria, and intraepithelial lymphocytes were counted in the intestinal biopsy specimens of 14 children with treated celiac disease following a single challenge with gluten. The serum neutrophil chemotactic activity was measured at 0, 1, 3, 5, and 24 h after challenge. There was no significant change in the number of intraepithelial lymphocytes, but the biopsy samples obtained at 5 h showed a marked increase in the inflammatory cells of the lamina propria and a significant decrease in the number of mast cells. A pronounced decrease was present at 3-5 h in the number of eosinophil cells in the blood. The neutrophil chemotactic activity of sera showed a significant increment in 10 of 14 patients. The intestinal permeability of patients became abnormal, as detected by the increased absorption of lactulose. These findings suggest that degranulation of mast cells may be involved in the pathogenesis of the small intestinal mucosal injury in children with celiac disease.

Adolescent↗