PubMed Health⌕ Search

Biomedical subjects

B Ludwig

Publications and source records attributed to B Ludwig.

At least 19 recordsLinked to original sources

Periodontal therapy in siblings with Papillon-Lefèvre syndrome and tinea capitis: a report of two cases.

OBJECTIVE: Report of clinical and microbiological periodontal findings before and 6 months after treatment of two siblings with Papillon-Lefèvre syndrome (PLS) and tinea capitis. METHODS: Two brothers, RG 3 years and NG 5 years of age, were referred for treatment due to premature mobility of their deciduous teeth. Probing depths (PPD), attachment levels (PAL-V), and furcation involvements were examined clinically. Panoramic radiographs were taken. Subgingival plaque samples within the deepest pocket of each tooth were taken and analysed by real-time polymerase chain reaction (PCR) for Actinobacillus actinomycetemcomitans (AA), Porphyromonas gingivalis, Tannerella forsythensis, Treponema denticola, Fusobacterium nucleatum, and Prevotella intermedia. One-stage full-mouth scaling and extraction of hopeless teeth were performed under general anaesthesia, followed by systemic amoxicillin and metronidazole for 7 days. Clinical and microbiological analyses were performed 6 months after treatment. RESULTS: Before treatment, both siblings had exhibited PPD of up to 13 mm, Class III furcation defects at four teeth, and marginal suppuration. AA was detected in both patients and at all teeth at levels ranging from 3.0 x 10(2) to 5.1 x 10(6). Both patients exhibited palmar and plantar hyperkeratosis. Seven teeth were extracted from RG, and nine from NG. Six months after treatment, PPD had been reduced to <or=5 mm. AA was not detected in any of the remaining teeth. CONCLUSION: Even periodontally affected deciduous teeth of PLS patients can be treated successfully. Suppression of AA to below detection level seems to be of high significance.

Aggregatibacter actinomycetemcomitans↗

Loss of varicella zoster virus antibodies despite detectable cell mediated immunity after vaccination.

BACKGROUND: Vaccination of children against VZV has been included in the recommendations of the "permanent committee of vaccination" (STIKO; Ständige Impfkommission of the Robert Koch Institute, Berlin, Germany) in July 2004. Due to this recommendation the medical practitioner and the laboratories will be confronted with the problem of serologic non-responders or loss of humoral immunity more frequently. PATIENTS AND METHODS: Here we report the case of a Varicella Zoster Virus (VZV) vaccinee, who lost detectable VZV antibodies although she had a persisting VZV specific CD4 cellular immune response. We compare these parameters to the VZV specific CD4 T cell responses of VZV seronegative and seropositive healthy persons, as well as patients with VZV disease. RESULTS: VZV specific CD4 frequencies of VZV antibody seronegative persons remained on the average below 0.1% (median 0.04%, +/- SD 0.03, range 0.01-0.08%) and were significantly lower than VZV specific frequencies of seropositive healthy persons (median 0.3%, +/- SD 0.24, range 0.06-0.81%; Mann-Whitney U-test p = 0.001). The samples of patients with VZV associated disease showed an even higher median level of VZV specific CD4 cell response than the VZV seropositive healthy persons (median 1.04%, +/- SD 1.06, range 0.51-2.92%, Mann-Whitney U-test p = 0.008). The VZV specific immune response of the health care worker directly after vaccination was comparable to the VZV specific immunity in VZV seropositive healthy adults. Despite serological reconversion 1.5 years later the VZV specific CD4 response still remained measurable and positive. CONCLUSION: The new general VZV vaccination recommendation for children in Germany will probably increase the number of persons that will be seronegative after vaccination. To gain more information concerning the absence of seroconversion or the loss of immunity, it will be necessary to focus future post-VZV vaccination immunity studies not only on serologic testing but also on the measuring of the cell mediated immunity.

Adolescent↗

Increased cytokine transcripts in pouchitis reflect the degree of inflammation but not the underlying entity.

BACKGROUND AND AIMS: After ileopouch anal anastomosis (IPAA), 10-40% of patients with ulcerative colitis (UC) but only 5% of patients with familial adenomatous polyposis (FAP) develop pouchitis. Immunoregulatory abnormalities might be of importance in the pathogenesis of the disease. Therefore, we characterized cytokine and chemokine transcripts in inflamed and non-inflamed pouches in patients with UC compared to those with FAP and Crohn's disease (CD). PATIENTS AND METHODS: Mucosal biopsies were taken from 87 patients with IPAA [UC (n=70), CD (n=8) or FAP (n=9)]. Patients with active ileal CD (n=14), active UC (n=17) and non-inflammatory conditions (n=12) served as controls. The expression of 20 gene transcripts was quantified using real-time polymerase chain reaction. RESULTS AND FINDINGS: Pro-inflammatory cytokines and chemokines are significantly increased in IPAA patients with acute pouchitis. This increase is independent of the underlying disease (UC or CD) and reflects the degree of inflammation. A good correlation between pouchitis activity (using the Pouchitis Disease Activity Index) and the MRP-14, interleukin-8, macrophage inflammatory protein-2alpha and matrix metalloproteinase-1 transcripts was observed. INTERPRETATIONS AND CONCLUSIONS: Our data support the view that pouchitis reflects an inflammatory process that is different from that of underlying inflammatory bowel diseases, as the cytokine and chemokine patterns in pouchitis are neither typical of CD nor of UC, but maybe due to bacterial intestinal microflora overgrowth in the pouch lumen. Quantification of transcript levels allows an estimation of the extent of mucosal inflammation and may become helpful in the evaluation of the disease, especially in clinical trials.

Adolescent↗

Is a third proton-conducting pathway operative in bacterial cytochrome c oxidase?

Despite the existence of several three-dimensional structures of cytochrome c oxidases, a detailed understanding of pathways involved in proton movements through the complex remains largely elusive. Next to the two well-established pathways (termed D and K), an additional proton-conducting network ('H-channel') has been proposed for the beef heart enzyme. Yet, our recent mutational studies on corresponding residues of the Paracoccus denitrificans cytochrome c oxidase provide no clues that such a pathway operates in the prokaryotic enzyme.

Bacterial Proteins↗

Asymmetric binding of the high-affinity Q(H)(*)(-) ubisemiquinone in quinol oxidase (bo3) from Escherichia coli studied by multifrequency electron paramagnetic resonance spectroscopy.

Ubiquinone-2 (UQ-2) selectively labeled with (13)C (I =(1)/(2)) at either the position 1- or the 4-carbonyl carbon is incorporated into the ubiquinol oxidase bo(3) from Escherichia coli in which the native quinone (UQ-8) has been previously removed. The resulting stabilized anion radical in the high-affinity quinone-binding site (Q(H)(*)(-)) is investigated using multifrequency (9, 34, and 94 GHz) electron paramagnetic resonance (EPR) spectroscopy. The corresponding spectra reveal dramatic differences in (13)C hyperfine couplings indicating a strongly asymmetric spin density distribution over the quinone headgroup. By comparison with previous results on labeled ubisemiquinones in proteins as well as in organic solvents, it is concluded that Q(H)(*)(-) is most probably bound to the protein via a one-sided hydrogen bond or a strongly asymmetric hydrogen-bonding network. This observation is discussed with regard to the function of Q(H) in the enzyme and contrasted with the information available on other protein-bound semiquinone radicals.

Binding Sites↗

Cytochrome c oxidase--structure, function, and physiology of a redox-driven molecular machine.

Cytochome c oxidase is the terminal member of the electron transport chains of mitochondria and many bacteria. Providing an efficient mechanism for dioxygen reduction on the one hand, it also acts as a redox-linked proton pump, coupling the free energy of water formation to the generation of a transmembrane electrochemical gradient to eventually drive ATP synthesis. The overall complexity of the mitochondrial enzyme is also reflected by its subunit structure and assembly pathway, whereas the diversity of the bacterial enzymes has fostered the notion of a large family of heme-copper terminal oxidases. Moreover, the successful elucidation of 3-D structures for both the mitochondrial and several bacterial oxidases has greatly helped in designing mutagenesis approaches to study functional aspects in these enzymes.

Animals↗

Primary cytomegalovirus infection in an outpatient setting--laboratory markers and clinical aspects.

BACKGROUND: Occasionally, primary cytomegalovirus (CMV) infection may give rise to more or less severe clinical illness in immunocompetent adults. We retrospectively analyzed cases of acute CMV infection in medical outpatients. PATIENTS AND METHODS: Over a 6-year period, we identified 22 patients with a febrile illness and hepatitis suffering from primary CMV infection. This was diagnosed on the basis of a strongly positive CMV IgM antibody test result and/or CMV IgG seroconversion. Clinical features as well as relevant laboratory results were analyzed. We also tested available samples for CMV glycoprotein B-specific antibodies and CMV IgG avidity and analyzed results of Epstein-Barr virus (EBV)-specific antibody assays. In addition, current age-specific CMV IgG seroprevalence rates were determined using 9,870 routine patient samples. RESULTS: At presentation, all patients complained of malaise and fever higher than 38 degrees C, and many also complained of cephalgia. Most patients who underwent abdominal ultrasonography had an enlargement of the spleen. Most patients had a relative lymphocytosis but only three had a mild leukocytosis. C-reactive protein was only slightly elevated in 13 patients; all 22 patients had elevated levels of alanine aminotransferase (ALT) and lactate dehydrogenase (LDH). Half the patients reported travel to areas outside western Europe, mostly to tropical and subtropical areas, within 3 weeks before onset of illness. Primary CMV infection was confirmed by negative anti-gB antibody test results and the absence of high-avidity CMV antibodies. In contrast, despite past EBV infection demonstrated by positive anti-EBNA-1 results, 15 out of 21 patients tested for EBV markers had positive or nonspecific IgM test results. The overall CMV IgG seroprevalence rate in the routine samples was 64.4%, with marked age-dependent increases. CONCLUSION: CMV is a relevant differential diagnosis in feverish illnesses accompanied by hepatitis in otherwise healthy adults, about 40% of whom are CMV-naïve. Half our patients seem to have acquired their CMV infection abroad, so that a diagnosis of CMV infection needs to be taken into account in travelers, in addition to infectious illnesses more commonly considered in this context, such as dengue or hepatitis A. For diagnosis, both CMV and EBV antibody studies should be performed and the inclusion of assays able to demonstrate past infection is helpful for achieving a definite diagnosis.

Acute Disease↗

Complete sequencing shows a role for MSX1 in non-syndromic cleft lip and palate.

MSX1 has been proposed as a gene in which mutations may contribute to non-syndromic forms of cleft lip and/or cleft palate. Support for this comes from human linkage and linkage disequilibrium studies, chromosomal deletions resulting in haploinsufficiency, a large family with a stop codon mutation that includes clefting as a phenotype, and the Msx1 phenotype in a knockout mouse. This report describes a population based scan for mutations encompassing the sense and antisense transcribed sequence of MSX1 (two exons, one intron). We compare the completed genomic sequence of MSX1 to the mouse Msx1 sequence to identify non-coding homology regions, and sequence highly conserved elements. The samples studied were drawn from a panethnic collection including people of European, Asian, and native South American ancestry. The gene was sequenced in 917 people and potentially aetiological mutations were identified in 16. These included missense mutations in conserved amino acids and point mutations in conserved regions not identified in any of 500 controls sequenced. Five different missense mutations in seven unrelated subjects with clefting are described. Evolutionary sequence comparisons of all known Msx1 orthologues placed the amino acid substitutions in context. Four rare mutations were found in non-coding regions that are highly conserved and disrupt probable regulatory regions. In addition, a panel of 18 population specific polymorphic variants were identified that will be useful in future haplotype analyses of MSX1. MSX1 mutations are found in 2% of cases of clefting and should be considered for genetic counselling implications, particularly in those families in which autosomal dominant inheritance patterns or dental anomalies appear to be cosegregating with the clefting phenotype.

Amino Acid Sequence↗

Viral zoonoses - a threat under control?

Despite intensive research and considerable effort to eradicate infectious diseases, modern medicine has failed to control many infectious diseases which have been thought to be easy to overcome with advances in medical science and technology. In fact, infectious diseases remain a dominant feature in public health considerations for the 21st century. Some infectious agents already known to be pathogenic have gained increasing importance in recent decades due to changes in disease patterns. Furthermore, many new, previously unknown infectious agents with a high pathogenic potential have been identified. Nearly all of these emergent disease episodes have involved zoonotic or species-jumping infectious agents. The complex interaction of factors like environmental and ecological changes, social factors, decline of health care, human demographics and behaviour influences the emergence of re-emergence of such diseases. Viruses, especially RNA viruses with their ability to adapt quickly to changing environmental conditions, are among the most prominent examples of emerging pathogens. In this review, we present the important examples of zoonotic viruses and discuss the factors playing a key role in the emergence and resurgence of these diseases.

Animal Husbandry↗

Carboxyl residues in the iron-sulfur protein are involved in the proton pumping activity of P. denitrificans bc(1) complex.

A study is presented on chemical modification of the three subunit Paracoccus denitrificans bc(1) complex. N-(Ethoxycarbonyl)-2-ethoxy-1,2-dihydroquinoline (EEDQ) treatment caused a loss of the proton pumping activity of liposome-reconstituted bc(1) complex. A similar effect, which is referred to as the decoupling effect, resulted upon reaction of N,N'-dicyclohexylcarbodiimide (DCCD) with the complex. Direct measurement of the binding of EEDQ to the complex subunits, performed in the presence of the fluorescent hydrophobic nucleophile 4'-[(aminoacetamido)methyl]fluorescein (AMF), showed that the iron-sulfur protein (ISP) and cytochrome c(1) were labeled by EEDQ, whereas cytochrome b was not. Tryptic digestion and sequencing analysis of the fluorescent fragment of the ISP revealed this to consist of a segment with six acidic residues, among which the highly conserved aspartate 160 is present. Analogous experiments on DCCD binding showed that all the three subunits of the complex were labeled. However, DCCD concentration dependence of carboxyl residue modification in the individual subunits and of proton pumping activity showed that the decrease of the H(+)/e(-) ratio correlated only with the modification of the ISP. Tryptic digestion of labeled ISP and sequencing analysis of the fluorescent fragment gave results superimposable upon those obtained with EEDQ. Chymotryptic digestion and sequencing analysis of the single fluorescent fragment of cytochrome b showed that this fragment contained glutamate 174 and aspartate 187. We conclude that, in the P. denitrificans bc(1) complex, carboxyl residues in cytochrome b do not appear to be critically involved in the proton pump mechanism of the complex.

Amino Acid Sequence↗

Solution structure and dynamics of the functional domain of Paracoccus denitrificans cytochrome c(552) in both redox states.

A soluble and fully functional 10.5 kDa fragment of the 18.2 kDa membrane-bound cytochrome c(552) from Paracoccus denitrificans has been heterologously expressed and (13)C/(15)N-labeled to study the structural features of this protein in both redox states. Well-resolved solution structures of both the reduced and oxidized states have been determined using high-resolution heteronuclear NMR. The overall protein topology consists of two long terminal helices and three shorter helices surrounding the heme moiety. No significant redox-induced structural differences have been observed. (15)N relaxation rates and heteronuclear NOE values were determined at 500 and 600 MHz. Several residues located around the heme moiety display increased backbone mobility in both oxidation states, while helices I, III, and V as well as the two concatenated beta-turns between Leu30 and Arg36 apparently form a less flexible domain within the protein structure. Major redox-state-dependent differences of the internal backbone mobility on the picosecond-nanosecond time scale were not evident. Hydrogen exchange experiments demonstrated that the slow-exchanging amide proton resonances mainly belong to the helices and beta-turns, corresponding to the regions with high order parameters in the dynamics data. Despite this correlation, the backbone amide protons of the oxidized cytochrome c(552) exchange considerably faster with the solvent compared to the reduced protein. Using both differential scanning calorimetry as well as temperature-dependent NMR spectroscopy, a significant difference in the thermostabilities of the two redox states has been observed, with transition temperatures of 349.9 K (76.8 degrees C) for reduced and 307.5 K (34.4 degrees C) for oxidized cytochrome c(552). These results suggest a clearly distinct backbone stability between the two oxidation states.

Calorimetry, Differential Scanning↗

[Study of vaccination for travel shows: serious gaps in polio, diphtheria and tetanus vaccination].

In a retrospective study, we analyzed the immune status of 1134 travellers (621 males, 513 females), by comparing actual with recommended vaccinations, in particular with regard to malaria. 61.6% of travellers showed complete immunization against diphtheria, 73.3% against tetanus, and 66.3% against polio. Overall, women have better immunization rates than men. The best immunization rates were seen in young adults (< 20 years). The majority of travellers had destinations in Africa (35.2%), Asia (21.95) and South America (20.9%). Accordingly, vaccinations for yellow fever and hepatitis were the most commonly indicated and implemented vaccinations, and more than 50% received antimalarial chemoprophylaxis.

Adult↗

Cytochrome C oxidase and the regulation of oxidative phosphorylation.

Life of higher organisms is essentially dependent on the efficient synthesis of ATP by oxidative phosphorylation in mitochondria. An important and as yet unsolved question of energy metabolism is how are the variable rates of ATP synthesis at maximal work load during exercise or mental work and at rest or during sleep regulated. This article reviews our present knowledge on the structure of bacterial and eukaryotic cytochrome c oxidases and correlates it with recent results on the regulatory functions of nuclear-coded subunits of the eukaryotic enzyme, which are absent from the bacterial enzyme. A new molecular hypothesis on the physiological regulation of oxidative phosphorylation is proposed, assuming a hormonally controlled dynamic equilibrium in vivo between two states of energy metabolism, a relaxed state with low ROS (reactive oxygen species) formation, and an excited state with elevated formation of ROS, which are known to accelerate aging and to cause degenerative diseases and cancer. The hypothesis is based on the allosteric ATP inhibition of cytochrome c oxidase at high intramitochondrial ATP/ADP ratios ("second mechanism of respiratory control"), which is switched on by cAMP-dependent phosphorylation and switched off by calcium-induced dephosphorylation of the enzyme.

Adenosine Triphosphate↗

QH*- ubisemiquinone radical in the bo3-type ubiquinol oxidase studied by pulsed electron paramagnetic resonance and hyperfine sublevel correlation spectroscopy.

The high-affinity QH ubiquinone-binding site in the bo(3) ubiquinol oxidase from Escherichia coli has been characterized by an investigation of the native ubiquinone radical anion QH(*-) by pulsed electron paramagnetic resonance (EPR) spectroscopy. One- and two-dimensional electron spin-echo envelope modulation (ESEEM) spectra reveal strong interactions of the unpaired electron of QH(*-) with a nitrogen nucleus from the surrounding protein matrix. From analysis of the experimental data, the (14)N nuclear quadrupolar parameters have been determined: kappa = e(2)qQ/4h = 0.93 MHz and eta = 0.50. This assignment is confirmed by hyperfine sublevel correlation (HYSCORE) spectroscopy. On the basis of a comparison of these data with those obtained previously for other membrane-protein bound semiquinone radicals and model systems, this nucleus is assigned to a protein backbone nitrogen. This result is discussed with regard to the location and potential function of QH in the enzyme.

Anions↗

Cytochromes c(550), c(552), and c(1) in the electron transport network of Paracoccus denitrificans: redundant or subtly different in function?

Paracoccus denitrificans strains with mutations in the genes encoding the cytochrome c(550), c(552), or c(1) and in combinations of these genes were constructed, and their growth characteristics were determined. Each mutant was able to grow heterotrophically with succinate as the carbon and free-energy source, although their specific growth rates and maximum cell numbers fell variably behind those of the wild type. Maximum cell numbers and rates of growth were also reduced when these strains were grown with methylamine as the sole free-energy source, with the triple cytochrome c mutant failing to grow on this substrate. Under anaerobic conditions in the presence of nitrate, none of the mutant strains lacking the cytochrome bc(1) complex reduced nitrite, which is cytotoxic and accumulated in the medium. The cytochrome c(550)-deficient mutant did denitrify provided copper was present. The cytochrome c(552) mutation had no apparent effect on the denitrifying potential of the mutant cells. The studies show that the cytochromes c have multiple tasks in electron transfer. The cytochrome bc(1) complex is the electron acceptor of the Q-pool and of amicyanin. It is also the electron donor to cytochromes c(550) and c(552) and to the cbb(3)-type oxidase. Cytochrome c(552) is an electron acceptor both of the cytochrome bc(1) complex and of amicyanin, as well as a dedicated electron donor to the aa(3)-type oxidase. Cytochrome c(550) can accept electrons from the cytochrome bc(1) complex and from amicyanin, whereas it is also the electron donor to both cytochrome c oxidases and to at least the nitrite reductase during denitrification. Deletion of the c-type cytochromes also affected the concentrations of remaining cytochromes c, suggesting that the organism is plastic in that it adjusts its infrastructure in response to signals derived from changed electron transfer routes.

Bacterial Proteins↗

Induction of photochemical auto-reduction of cytochrome-c oxidase by an organic peroxide.

Cytochrome-c oxidase aa3 (CcO) from Paracoccus denitrificans interacts with tertiary butyl hydroperoxide (t-Bu-O-O-H, TBHP) by forming an adduct as indicated by an absorption shift at 408/432 nm and the induction of photochemical autoreduction. The adduct was stable at room temperature for several days even under aerobic conditions. Upon irradiation (413 nm) of the adduct, a photoproduct, similar to the oxygenated mixed valence species (607 nm form), was formed, as indicated by the 418/442 and 607 nm signals in the absorption-difference spectrum. It is concluded that the adduct formation changes the photochemical properties of heme a3. A molecular model for the binding mechanism of TBHP to CcO and for the photochemistry of heme a3-TBHP adduct is proposed.

Electron Transport Complex IV↗

Structural changes in cytochrome c oxidase induced by cytochrome c binding. A resonance raman study.

Electrostatically stabilized complexes of fully oxidized cytochrome c oxidase from Paracoccus denitrificans and horse heart cytochrome c were studied by resonance Raman spectroscopy. The experiments were carried out with the wild-type oxidase and a variant in which a negatively charged amino acid in the binding domain (D257) is replaced by an asparagine. It is shown that cytochrome c induces structural changes at heme a and heme a(3) which are reminiscent to those found in mammalian cytochrome c oxidase-cytochrome c complex. The spectral changes are attributed to subtle changes in the heme-protein interactions implying that there is a structural communication from the binding domain even to the remote catalytic center. Only for the heme a modes minor spectral differences were found in the response of the wild-type and the D257N variant oxidase upon cytochrome c binding indicating that electrostatic interactions of aspartate 257 are not crucial for the perturbation of the catalytic site structure in the complex. On the other hand, in none of the complexes, structural changes were detected in the bound cytochrome c. These findings are in contrast to previous results obtained with beef heart cytochrome c oxidase which triggers the formation of a new conformational state of cytochrome c assumed to be involved in the biological electron transfer process.

Animals↗

Tracing the D-pathway in reconstituted site-directed mutants of cytochrome c oxidase from Paracoccus denitrificans.

Heme-copper terminal oxidases use the free energy of oxygen reduction to establish a transmembrane proton gradient. While the molecular mechanism of coupling electron transfer to proton pumping is still under debate, recent structure determinations and mutagenesis studies have provided evidence for two pathways for protons within subunit I of this class of enzymes. Here, we probe the D-pathway by mutagenesis of the cytochrome c oxidase of the bacterium Paracoccus denitrificans; amino acid replacements were selected with the rationale of interfering with the hydrophilic lining of the pathway, in particular its assumed chain of water molecules. Proton pumping was assayed in the reconstituted vesicle system by a stopped-flow spectroscopic approach, allowing a reliable assessment of proton translocation efficiency even at low turnover rates. Several mutations at positions above the cytoplasmic pathway entrance (Asn 131, Asn 199) and at the periplasmic exit region (Asp 399) led to complete inhibition of proton pumping; one of these mutants, N131D, exhibited an ideal decoupled phenotype, with a turnover comparable to that of the wild-type enzyme. Since sets of mutations in other positions along the presumed course of the pathway showed normal proton translocation stoichiometries, we conclude that the D-pathway is too wide in most areas above positions 131/199 to be disturbed by single amino acid replacements.

Bacterial Proteins↗