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Biomedical subjects

R Laufs

Publications and source records attributed to R Laufs.

At least 37 records · Page 2Linked to original sources

Cytomegalovirus cultured from different major leukocyte subpopulations: association with clinical features in CMV immunoglobulin G-positive renal allograft recipients.

Cytomegalovirus (CMV) cultured from peripheral blood mononuclear cells (PBMCs) was shown to be associated more closely with clinical manifestations than infectious CMV in polymorphonuclear leukocytes (PMNLs) of renal allograft recipients with secondary CMV infection. Shell vial culture was carried out with ficoll-purified PBMCs and PMNLs of 71 CMV IgG-positive patients after kidney transplantation. Thirty-six patients experienced active CMV infections. Of these, 17 developed clinical symptoms. The diagnostic value of PMNLs and PBMCs viremia was determined in comparison to pp65 antigenemia, leukoDNAemia, plasma DNAemia, and detection of cytomegalic endothelial cells. In both PMNLs and PBMCs (with or without detectable endothelial cells), frequencies and levels of viremia were significantly higher among symptomatic patients. Regarding the occurrence of clinical CMV manifestations, the sensitivity of culture from PMNLs and from PBMCs fractions was 100%. Viremia in PBMCs, however, was far more specific (94%) than in PMNLs (74%). Cutoff values established previously for pp65 antigenemia and leukoDNAemia, standard markers in the laboratory, had similar specificity (96% each) to PBMCs viremia, but were less sensitive (88% each). Plasma DNA-emia was both less sensitive (82%) and less specific (69%) than PBMCs viremia. Detection of endothelemia showed maximal specificity (100%), but inferior sensitivity (47%). All patients had PBMCs viremia before the onset of symptoms. In conclusion, infectious CMV present in PBMCs may prove to be a determinant of clinical CMV manifestations in seropositive immunocompromised individuals. Factors involved in PBMCs tropism may help to understand the pathogenetic mechanisms of CMV dissemination in this group of patients.

Cells, Cultured↗

Virulence factors of Enterococcus faecalis and Enterococcus faecium blood culture isolates.

Known and potential virulence factors of enterococcal blood culture isolates were studied using 89 Enterococcus faecalis and 24 Enterococcus faecium isolates. The prevalence of the respective factors was (Enterococcus faecalis vs. Enterococcus faecium): hemolysin 16% vs. 0%, gelatinase 55% vs. 0%, aggregation substance 63% vs. 13%, lipase 35% vs. 4%, hemagglutinin 97% vs. 0%. Deoxyribonuclease was not detected in any isolate. The study showed that hemagglutinin and lipase may represent additional virulence factors of Enterococcus faecalis but not Enterococcus faecium. The significance of these factors in the pathogenesis of enterococcal infection needs to be elucidated in further studies.

Bacterial Proteins↗

Nosocomial outbreak of vancomycin-resistant Enterococcus faecium at a German university pediatric hospital.

Nosocomial Infections caused by vancomycin-resistant enterococci (VRE) are an emerging threat to critically ill patients. At the University Hospital Eppendorf, VRE were isolated from 38 patients between August 1993 and April 1997, of whom 32 were hospitalized at the Department of Pediatrics. Pulsed-field gel electrophoresis revealed that 26 Enterococcus faecium isolates from patients of the Department of Pediatrics were identical or closely related, and that isolates from three additional patients of the same department were possibly related. All of these isolates were of vanA genotype. They were resistant to glycopeptides, ampicillin, ciprofloxacin, clindamycin, and erythromycin. Most isolates displayed high-level resistance to gentamicin, but all remained susceptible to quinupristin/dalfopristin. Implementation of stringent hand disinfection and environmental disinfection policies, as well as measures for patient isolation contained this first outbreak of VRE at a German Children's hospital, which emphasizes the importance of hygienic measures for the control of nosocomial spread of these organisms.

Child, Preschool↗

Detection of TT virus DNA and GB virus type C/Hepatitis G virus RNA in serum and breast milk: determination of mother-to-child transmission.

To investigate the vertical transmission of the newly described TT virus (TTV), serum and breast milk samples from 46 women as well as sera from their 47 newborns were examined for the presence of TTV DNA by PCR. TTV DNA was detected in 47.8% (n = 22) of the women. All but one child born to these women were also viremic for TTV from the first sample onward. TTV DNA was found in 73.9% (n = 17) of the breast milk samples derived from TTV viremic mothers. The one TTV-negative child born to a viremic mother remained negative during follow-up, although it was breast-fed. Our data show that TTV is highly effectively transmitted from mothers to their children during pregnancy. Although the majority of breast milk samples from viremic mothers are positive by TTV PCR, there is no need to discourage women from breast-feeding, because most children are TTV viremic even before breast-feeding begins.

Animals↗

False-positive results of plasma PCR for cytomegalovirus DNA due to delayed sample preparation.

Positive results by cytomegalovirus (CMV) PCR of plasma are considered predictive of active CMV infection in kidney allograft recipients. To assess whether contamination with leukocyte-derived CMV DNA can distort the results, aliquots of whole-blood samples from 60 CMV immunoglobulin G-positive patients with leukocyte CMV DNAemia were stored for up to 24 h at room temperature (RT) and at 4 degrees C before plasma preparation. Native and ultrafiltered plasma samples were tested by CMV and beta-globin PCRs. Among 30 latently infected patients (negative for CMV pp65 antigens), low baseline rates (10%) and levels (median number of copies, 10 [per 10 microl]) of CMV plasma DNAemia in native plasma samples increased significantly over time (after 4 h at RT, 37% [P < 0.001]; median number of copies, 45 [P < 0.001]). Similar effects were found during storage at 4 degrees C. Ultrafiltration reduced the levels of CMV plasma DNAemia, but by 6 h of storage the levels were significantly elevated as well. CMV and beta-globin DNA kinetics in plasma were parallel. In contrast, 30 actively infected patients (pp65 positive) had high baseline rates (87% in native samples) and levels (median number of copies, 75) of CMV plasma DNAemia. No significant effects of storage or ultrafiltration and no concordance with beta-globin DNA kinetics were seen. In conclusion, delayed preparation of plasma samples bears a significant risk of false-positive CMV PCR results, probably due to leukocyte lysis. This has important implications in the clinical setting and for PCR standardization.

Blood Specimen Collection↗

Protein kinase C recognizes the protein kinase A-binding motif of nonstructural protein 3 of hepatitis C virus.

The nonstructural protein 3 (NS3) of hepatitis C virus (HCV) inhibits the nuclear transport and the enzymatic activity of the catalytic subunit of protein kinase A. This inhibition is mediated by an arginine-rich domain localized between amino acids 1487-1500 of the HCV polyprotein. The data presented here indicate that the arginine-rich domain, when embedded in recombinant fragments of NS3, interacts with the catalytic site of protein kinase C (PKC) and inhibits the phosphorylation mediated by this enzyme in vitro and in vivo. Furthermore, a direct binding of PKC to the NS3 fragments leads to an inhibition of the free shuttling of the kinase between the cytoplasm and the particulate fraction. In contrast, a peptide corresponding to the arginine-rich domain (HCV (1487-1500)), despite also being a PKC inhibitor, did not influence the PKC shuttling process and was transported to the particulate fraction by the translocating kinase upon activation with tetradecanoylphorbol-13-acetate. Using the tetradecanoylphorbol-13-acetate -stimulated respiratory burst of NS3-introduced neutrophils as a model system, we could demonstrate that NS3 is able to block PKC-mediated functions within intact cells. Our data support the possibility that NS3 disrupts the PKC-mediated signal transduction.

Amino Acid Sequence↗

GB virus C/hepatitis G virus infection in hemodialysis patients: determination of seroprevalence by a four-antigen recombinant immunoblot assay.

GB Virus C/Hepatitis G Virus (GBV-C/HGV) was identified recently and only two assays, consisting of a single recombinant protein, have been described for determination of the seroprevalence of this virus. An immunoblot assay was devised, which contains four recombinant GBV-C/HGV proteins. In this study, serum samples from 154 patients on maintenance hemodialysis were examined to assess the rate of seroreactivity against GBV-C/HGV. All sera were tested for the presence of antibodies by an in-house recombinant immunoblot assay, for GBV-C/HGV viremia by RT-PCR, and for HCV infection by PCR and by serological assays. Antibody reactivity against GBV-C/HGV was detected in 20.8% (n = 32) and viremia was found in 6.5% (n = 10) of the patients. In no case were viremia and GBV-C/HGV antibodies detected in parallel. HCV infection was observed in 15.6% (n = 24) by RT-PCR. In 20 of these patients, HCV antibodies were detected by enzyme immuno assay (EIA) and immunoblot assay. However, four of the HCV PCR-positive patients were negative by both serological tests. Only two patients were viremic for GBV-C/HGV and HCV in parallel. It is concluded that antibody reactivity against GBV-C/HGV is common among patients on maintenance hemodialysis. In contrast to HCV, parallel occurrence of GBV-C/HGV viremia and GBV-C/HGV seroreactivity was not observed. This suggests that GBV-C/HGV infection might be self-limiting.

Adult↗

Characterisation of non-structural protein 3 of hepatitis C virus as modulator of protein phosphorylation mediated by PKA and PKC: evidences for action on the level of substrate and enzyme.

Generally, the maximum activities of the protein kinases A (PKA) and C (PKC) show an optimum value for their substrate concentrations rather than a saturation curve; at high substrate concentrations, the kinase activity is completely abolished. The C- and N-truncated form of the non-structural protein 3 (NS3) of hepatitis C virus (HCV) (HCV-polyprotein-(1,189-1,525)) abolishes the inhibiting effect of the substrate, yielding saturable Michaelis-Menten kinetics of PKA and its catalytical domain (C subunit). In contrast, HCV-polyprotein-(1,189-1,525) activates PKC with increasing Vmax, while it abolishes the substrate inhibition of its catalytical domain (M-kinase) through a mechanism analogous to that of PKA and C subunit. PKC isoforms alpha, beta and gamma investigated are similarly activated by HCV-polyprotein-(1,189-1,525). Our data suggest that NS3 attenuates the substrate inhibition through a generalized mechanism operating mainly on the substrate level that directly results from a specific protein-protein interaction. In the case of the PKC, an additional kinase activating mechanism operates on the enzyme level. Both actions of NS3, the attenuation of the substrate inhibition and the activation of PKC, could not be explained by classical means that predict autophosphorylation to enhance the rate of substrate phosphorylation. The results are discussed in view of similar activities displayed by matchmakers and some molecular chaperones.

Alkylation↗

High rate of chronicity in HCV infection determined by antibody confirmatory assay and PCR in 4110 patients during long-term follow-up.

BACKGROUND: It is still unclear how many patients with hepatitis C virus (HCV) antibodies have viremia and hence are infectious. OBJECTIVES: To determine the chronicity of HCV infection by correlation of HCV antibodies with presence of viremia in long-term follow-up. STUDY DESIGN: In a longitudinal study sera of 4110 patients were analyzed with second generation HCV-enzyme immunoassay (EIA) and polymerase chain reaction (PCR). Only those patients were included in this study in whom sequential serum samples over a period of 2 years were available. To avoid preanalytical and analytical failures, we used a transport solution to prevent RNA degradation and a four-antigen recombinant immunoblot assay, established in our laboratory, for confirmation of antibody reactivity. RESULTS: Of 2815 patients with confirmed HCV antibodies 2784 (98.9%) were also positive in HCV-PCR assay. False reactive EIA results were detected in 177 (13.7%) individuals as shown by confirmatory assay and PCR. Only one patient (0.04%) spontaneously lost detectable HCV viremia and subsequently HCV-specific antibodies. CONCLUSIONS: Our study clearly demonstrates that presence of confirmed HCV-specific antibodies correlates significantly (98.9%; P < 0.001) with HCV viremia, and that spontaneous loss of viremia is a very rare event in HCV infection. We also found that elimination of HCV infection is not sufficiently predicted by the loss of detectable viremia in PCR, but can be concluded from the disappearance of virus-specific antibodies.

Adolescent↗

Identification and characterization of a histone binding site of the non-structural protein 3 of hepatitis C virus.

BACKGROUND: Chronic hepatitis resulting from the hepatitis C virus (HCV) infection leads to cirrhosis in at least half the infected patients and increases the risk of hepatocellular carcinoma. There are indications that this pathogenic effect may result from the disturbance of intracellular signal cascades caused by the interaction with viral antigens. Although a great amount of data has been accumulated about functional regions in HCV proteins, relatively little is known about their intracellular targets. Previously, we have demonstrated that the full-length non-structural protein 3 of HCV (NS3) (Borowski P, Heiland M, Feucht H, Laufs R. Characterisation of non-structural protein 3 of hepatitis C virus as modulator of protein phosphorylation mediated by PKA and PKC. Evidences for action on the level of substrate and enzyme. Arch Virol 1999a; 144) and its NH2- and COOH-terminal truncated form (Borowski P, Heiland M, Oehlmann K, Becker B, Kornetzky L, Feucht HH, Laufs R. Non-structural protein 3 of hepatitis C virus inhibits phosphorylation mediated by cAMP-dependent protein kinase. Eur J Biochem 1996;237:611-618) associate to stable complexes with core histones H2B and H4. The changes of the properties of histones as substrate for cAMP-dependent protein kinase (PKA) and protein kinase C (PKC) were found as a direct consequence of the interaction. OBJECTIVE: In the present study we further these observations, localize the histone binding domain of NS3 and investigate the mechanisms by which NS3 affects the functions of the histones in vitro. STUDY DESIGN: HCV protein exhibiting the mentioned histone binding activity was produced in a bacterial expression system, purified and binding to histones was biochemically characterized. The region of NS3 involved in the interaction with histones was defined by proteolytic fragmentation, microsequencing and a specific histone binding assay. Furthermore, a functional test to quantify the interaction of histones with DNA was established and the binding of DNA to histone as a function of NS3 concentration was analysed by means of graphical methods. RESULTS: The investigated fragment of HCV polyprotein consisting of amino acid residues 1189-1525 (HCV-polyprotein-(1189-1525)) displayed significant histone binding activity. The binding occurred at a molar ratio 1:1 of histone to HCV-polyprotein-(1189-1525) and was mediated by a linear stretch of amino acids located between the residues 1343 and 1379 of the HCV polyprotein. To demonstrate that HCV-polyprotein-(1189-1525) affects the binding of DNA to histones we used two independent methods: overlay assay and binding assay on Sepharose beads. Graphic analysis of the binding kinetics revealed an uncompetitive type of inhibition. CONCLUSIONS: Our results provide the first evidence that NS3 binds and affects the functions of core histones. The mechanism by which the NS3 interferes with the histone functions involves conformational changes of histone molecule.

Binding Sites↗

Inter- and intra-species karyotype variations among microsporidia of the genus Encephalitozoon as determined by pulsed-field gel electrophoresis.

Disseminated infections due to microsporidia of the genus Encephalitozoon are detected increasingly, especially in patients with AIDS. Identification of microsporidia can be achieved by a variety of immunological and molecular methods. This study evaluates the feasibility of pulsed-field gel electrophoresis (PFGE) for the analysis of karyotypes of the 3 known species of this genus (Encephalitozoon cuniculi, Encephalitozoon hellem and Encephalitozoon intestinalis) and of 2 of the 3 known E. cuniculi strains (strains I and III). Eleven chromosomal DNA bands were resolved for E. cuniculi and 10 chromosomal DNA bands for E. hellem and E. intestinalis, with molecular sizes ranging from 231 to 320 kb, from 197 to 288 kb and from 195 to 285 kb, respectively, resulting in estimated genome sizes of about 3.0 Mb, 2.5 Mb and 2.4 Mb. Different PFGE chromosomal banding patterns indicate that not only E. cuniculi, as previously described, but also E. hellem, represent a heterogeneous entity. PFGE is a valuable method of evaluating inter- and intra-species variations among Encephalitozoon species that may enable the identification of environmental sources of infection and modes of transmission.

Animals↗

Low risk of vertical transmission of hepatitis C virus by breast milk.

To evaluate the risk of hepatitis C virus (HCV) transmission via breast milk, we collected 76 samples of breast milk from 73 chronically HCV-infected women and serum samples from their 76 perinatally HCV-exposed children. Enzyme immunoassay and strip immunoblot assay were used for detection of antibodies to HCV, and reverse transcriptase-polymerase chain reaction analysis was used for detection of HCV RNA. None of the 76 samples of breast milk contained HCV RNA, whereas 37 (59.7%) of 62 mothers tested for HCV RNA had HCV viremia. Only 1 of the 76 breast-fed infants had evidence of HCV infection. Because HCV infection in this child was detected 1 month after birth, it seems unlikely that it was transmitted by breast-feeding. These results indicate that HCV infection in pregnant women should not be a contra-indication for breast-feeding.

Breast Feeding↗

Essential functional role of the polysaccharide intercellular adhesin of Staphylococcus epidermidis in hemagglutination.

Hemagglutination of erythrocytes is a common property of Staphylococcus epidermidis strains, which is related to adherence and biofilm formation and may be essential for the pathogenesis of biomaterial-associated infections caused by S. epidermidis. In three independent biofilm-producing, hemagglutination-positive S. epidermidis isolates, interruption of the icaADBC operon essential for polysaccharide intercellular adhesin (PIA) synthesis by Tn917 insertions led to a hemagglutination-negative phenotype. An immunoglobulin G fraction of antiserum to PIA greatly reduced hemagglutination. Purified PIA led to a 64-fold decrease of hemagglutination titers of these strains; however, it did not mediate hemagglutination by itself. These observations define PIA as the hemagglutinin of S. epidermidis or at least as its major functional component.

Adhesins, Bacterial↗

Definition of false-positive reactions in screening for hepatitis C virus antibodies.

The rate of false-positive hepatitis C virus enzyme immunoassay results was determined to be at least 10% among 1,814 reactive serum samples based on (i) negative results in an independent confirmation assay, (ii) negative PCR results, and (iii) no patients developing clinical or biochemical signs of hepatitis during a 1-year follow-up.

False Positive Reactions↗

Age-dependent acquisition of hepatitis G virus/GB virus C in a nonrisk population: detection of the virus by antibodies.

Until now there have been few seroepidemiological data for hepatitis G virus/GB virus type C (HGV/GBV-C). A four-antigen HGV/GBV-C immunoblot was established to examine 446 serum specimens from healthy individuals without risk factors for parenteral viral transmission. These individuals were divided into seven groups according to age. Seroprevalence rates were low for children and adolescents (5.6%) and increased for the age groups assumed to be the most sexually active (15.3 to 26.8%). Remarkably, none of the 80 individuals who tested positive for HGV/GBV-C antibodies were simultaneously positive for HGV/GBV-C viremia. From our data we conclude that HGV/GBV-C infection is widespread in the general population (16 to 25%). The development of an antibody response is associated with clearance of HGV/GBV-C viremia. Due to the lack of risk factors for HGV/GBV-C infection of blood, other efficient transmission routes must exist. It must be assumed that HGV/GBV-C transmission may be linked to sexual activity.

Adolescent↗

Serological determination of hepatitis C virus subtypes 1a, 1b, 2a, 2b, 3a, and 4a by a recombinant immunoblot assay.

Serological determination of hepatitis C virus (HCV) subtypes has been hampered by the lack of suitable assays. Therefore, a recombinant immunoblot assay has been established for serological differentiation of HCV subtypes 1a, 1b, 2a, 2b, 3a, and 4a. It consists of recombinant HCV proteins from the NS-4 region propagated in Escherichia coli. To confirm the serotyping assay results, the results were compared with those obtained by nucleotide sequencing of the NS-5 region. Sera from 157 patients with chronic HCV infection were examined by this assay, and specific antibodies could be detected in 86% (n = 135) of them. The HCV genotype was determined correctly in all but one sample, and the subtypes determined by the serotyping assay corresponded to the HCV subtypes detected by nucleotide sequencing for 95% (n = 128) of the samples. These data indicate that HCV subtypes can be distinguished serologically. The assay that is described provides an easier means of identification of infection with different HCV subtypes for wider clinical and epidemiological applications.

Amino Acid Sequence↗

Protein kinase C-alpha produces reciprocal effects on the phorbol ester stimulated tyrosine phosphorylation of a 50 kDa kinase in Jurkat cells.

A detergent extract isolated from the enriched fraction of integral membrane proteins of Jurkat cells showed an enhanced tyrosine phosphate level when phosphorylated in the presence of phorbol 12-myristate 13-acetate (TPA) and phorbol 12,13-dibutyrate (PDBu). The enhanced tyrosine phosphorylation was observed when the reaction time exceeded 6 min; at shorter incubation times, however, TPA inhibited tyrosine phosphorylation. When the reaction proceeded for a constant time period longer than 6 min and phorbol esters were added at different times after the start of the reaction, two phases of an enhanced tyrosine phosphorylation of a 50 kDa protein were observed. An increased phosphorylation of the 50 kDa protein was correlated with an enhanced phosphorylation of poly(Glu4,Tyr1). The two phases of enhanced phosphorylation differed in their TPA and PDBu requirement and in the proteins that were tyrosine phosphorylated. Studies with protein kinase C (PKC) inhibitors showed a negatively correlated effect on the enhanced tyrosine phosphorylation in phase I; tyrosine phosphorylation was further augmented. In phase II the regulation of tyrosine phosphorylation correlated with the efficiency of the PKC inhibitors on the alpha-isoform of PKC which was found in the cell extract. Separation of the proteins present in the investigated cell extract by gel filtration revealed a co-migration of the alpha-PKC and the 50 kDa protein. The metabolic labeling of intact Jurkat cells with 32Pi indicated that phorbol esters are also able to induce tyrosine phosphorylation of the 50 kDa protein underin vivo conditions. These data suggest an activation of two different tyrosine phosphorylation pathways by phorbol esters involving tyrosine phosphorylation/autophosphorylation of a 50 kDa kinase, as confirmed by 5'-p-fluorosulfonylbenzoyladenosine (FSBA) labeling, that are accurately regulated by alpha-PKC.

Adenosine↗