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Biomedical subjects

A Ziegler

Publications and source records attributed to A Ziegler.

At least 19 recordsLinked to original sources

Assembly and function of the two ABC transporter proteins encoded in the human major histocompatibility complex.

Presentation of cytoplasmic antigens to class I-restricted cytotoxic T cells implied the existence of a specialized peptide transporter. For most class I heavy chains, association with peptides of the appropriate length is required for stable assembly with beta 2-microglobulin. Mutant cells RMA-S and .174/T2 neither assemble stable class I molecules nor present intracellular antigens, and we have suggested that they have lost a function required for the transport of short peptides from the cytosol to the endoplasmic reticulum. The genetic defect in .174 has been localized to a large deletion in the class II region of the major histocompatibility complex, within which two genes (RING4 and RING11) have been identified that code for 'ABC' (ATP-binding cassette) transporters. We report here that the protein products of these two genes assemble to form a complex. Defects in either protein result in the formation of unstable class I molecules and loss of presentation of intracellular antigens. The molecular defect in a new mutant, BM36.1, is shown to be in the ATP-binding domain of the RING11/PSF2 protein. This is in contrast to the mutant .134, which lacks the RING4/PSF1 protein.

ATP Binding Cassette Transporter, Subfamily B, Mem

Beta-adrenergic effects on cellular Na, Mg, Ca, K and Cl in vascular smooth muscle: electron probe analysis of rabbit pulmonary artery.

The effects of beta-adrenergic stimulation on the cellular content and subcellular distribution of Na, Mg, Ca, K and Cl were determined by electron probe X-ray microanalysis of muscles stimulated with 5-hydroxytryptamine. Isoproterenol caused a significant decrease in cytoplasmic and mitochondrial Na and Cl, and an increase in cytoplasmic Mg. Isoproterenol also significantly decreased total cytoplasmic Ca measured with small diameter probes, without affecting cellular Ca measured with large probes that included the sarcoplasmic reticulum (SR). The decrease in cytoplasmic Na and the effects on cytoplasmic and cellular Ca are consistent with, respectively, beta-adrenergic stimulation of the Na-pump and of Ca-uptake into the SR, but the beta-adrenergic increase in cytoplasmic Mg also raises the possibility of stimulated Na/Mg exchange.

Animals

Influence of supersaturation on the pharmacodynamic effect of bupranolol after dermal administration using microemulsions as vehicle.

Transdermal absorption of drugs is limited by the stratum corneum, which serves as a diffusion barrier. This barrier might be overcome by enhancing the thermodynamic activity of the drug vehicle. Thermodynamic activity is particularly high in supersaturated systems because it is directly correlated with the degree of saturation. Since supersaturated systems are not stable, they were formed in situ by application of water-free microemulsion bases. These water-free microemulsion bases saturated with the drug were applied to New Zealand albino rabbits with an occlusive patch. Occlusion leads to water uptake from the skin due to hydratation and changes the microemulsion base into a microemulsion. The microemulsion will become supersaturated as a result of decreasing solubility of the drug with increasing water content. The pharmacodynamic effect of the model drug bupranolol in vivo was investigated over a 10-hr time period. The in vitro solubility of bupranolol was examined with respect to the water content. The solubility vs water content curves were compared to the effect vs time curves. The microemulsions and their individual components were studied, and the effect vs time curves were inversely correlated with the solubility vs water content curves.

Administration, Cutaneous

The nucleotide sequence of RNA-1 of raspberry bushy dwarf virus.

Raspberry bushy dwarf virus (RBDV) has isometric, 33 nm diameter particles and a bipartite RNA genome. Sequencing of the larger component (RNA-1) showed that it consists of 5449 nucleotides and contains one large open reading frame encoding a putative translation product with a calculated M(r) of 190,000. Comparisons of this polypeptide with non-structural proteins of other plant viruses revealed significant homologies with those of alfalfa mosaic virus (AlMV), brome mosaic virus (BMV), cucumber mosaic virus (CMV) and tobacco mosaic virus (TMV). Thus RBDV belongs to the supergroup of 'Sindbis-like' plant viruses. The translation product of RBDV RNA-1 contains motifs characteristic of proteins with polymerase, methyltransferase and helicase activities, suggesting that this protein is involved in the replication of the viral RNA. Thus in RBDV, as in TMV, all three functional domains are combined in the single protein, whereas in AlMV, BMV and CMV these domains are distributed over the proteins encoded by RNA-1 and RNA-2. These findings support the idea that RBDV should be placed in a distinct virus genus for which the name idaeovirus has been proposed.

Amino Acid Sequence

Regional mapping of the gene for autosomal dominant spinocerebellar ataxia (SCA1) by localizing the closely linked D6S89 locus to 6p24.2----p23.05.

The locus for one subtype of autosomal dominant spinocerebellar ataxias (SCA1) is closely linked (within 1-2 cM) to D6S89, which contains a highly polymorphic dinucleotide repeat sequence. D6S89 has been mapped previously to 6p24----p21.3, between the HLA and F13A1 loci. Mutant cell lines were used to correlate the absence or presence of D6S89 with cytogenetically detectable interstitial 6p deletions. The results allowed us to map D6S89 to the 6p24.2----p23.05 region. The close linkage of SCA1 to D6S89 indicates that this locus is most likely located in the 6p24----p23 segment.

Cell Line, Transformed

Status of the p53 tumor suppressor gene in human squamous carcinoma cell lines.

Dominant-negative and/or loss-of-function mutations of the p53 tumor suppressor gene are frequently found in squamous cell carcinomas of the skin and of the head-and-neck region. In order to identify the precise mechanisms of inactivation of p53 in tumors of this class, we examined the status of p53 RNA, protein and DNA in a panel of eight human squamous carcinoma cell lines (head-and-neck, 3; esophagus, 1; lung, 1; uterine cervix, 2; vulva, 1). Three lines (A253, CaLu-1, SqCC/Y1) failed to express any p53 mRNA. A253 cells contained a single p53 allele without mutations in exons 2-9, suggesting that the lack of transcription was the result of mutations in the regulatory region of the gene. Both p53 alleles were deleted in CaLu-1 cells, whereas the single allele present in SqCC/Y1 cells was rearranged and carried two missense mutations in exon 5. Two cell lines (A431, FaDu) expressed only 50% of the normal level of p53 mRNA, either because only one allele was present (A431), or because only one of the two alleles was transcribed (FaDu). The two cervical carcinoma lines (CaSki, C4-1) expressed normal levels of p53 mRNA, but no wild type protein, presumably as a result of accelerated degradation by the human papillomavirus 16 or -18 E6 oncoprotein present in these cells as previously described (Scheffner et al., Proc. Natl. Acad. Sci. USA 88:5523-5527; 1991). Three of the lines expressed only mutant p53 protein (A431, FaDu, CE-48) resulting from missense mutations in codons 248 and 273.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence

Protein kinase C down-regulation enhances cAMP-mediated induction of urokinase-type plasminogen activator mRNA in LLC-PK1 cells.

Expression of the urokinase-type plasminogen activator (uPA) gene in LLC-PK1 cells can be induced by signals mediated by both cAMP-dependent protein kinase (PKA) and Ca(2+)- and phospholipid-dependent protein kinase (PKC). We have utilized the tumor promoter 12-O-tetradecanoylphorbol 13-acetate (TPA) to down-regulate PKC, in order to test for an effect on the PKA-mediated induction of the uPA gene expression. Incubation of cells for 24 h with 100 ng/ml TPA caused a marked decrease of PKC protein, both in cytosolic and particulate fractions, and an 85% reduction of total PKC activity. After down-regulation of PKC, uPA mRNA accumulation induced by 8-Br-cAMP was 5-10-fold higher than in control cells. Both uPA mRNA stability and uPA gene transcription rates induced by 8-Br-cAMP were increased by PKC down-regulation (6- and 1.8-fold, respectively). Although total PKA activity was reduced by 20% in extracts from PKC-depleted cells, activation of PKA by 8-Br-cAMP was 2.5-fold higher than in control cells. This enhanced activation of PKA in PKC-depleted cells also occurred in response to other cAMP derivatives and to cAMP induced endogenously by the activation of adenylate cyclase with forskolin, but was not due to down-regulation-associated changes in the rate of cAMP synthesis. Our results demonstrate that in LLC-PK1 cells, down-regulation of PKC results in an enhanced induction of uPA gene expression by cAMP-mediated signals without alterations in adenylate cyclase activity, suggesting a mechanism distal to adenylate cyclase.

1-Methyl-3-isobutylxanthine

Okadaic acid induction of the urokinase-type plasminogen activator gene occurs independently of cAMP-dependent protein kinase and protein kinase C and is sensitive to protein synthesis inhibition.

Urokinase-type plasminogen activator (uPA) gene expression in LLC-PK1 cells is induced by activation of cAMP-dependent protein kinase (cAMP-PK) or protein kinase C (PK-C). To determine whether protein phosphatases can also modulate uPA gene expression, we tested okadaic acid, a potent specific inhibitor of protein phosphatases 1 and 2A, in the presence and absence of cAMP-PK and PK-C activators. Okadaic acid by itself induced uPA mRNA accumulation. This induction was strongly attenuated by the inhibition of protein synthesis. In contrast, the inhibition of protein synthesis enhanced induction by 8-bromo-cAMP and only delayed induction by 12-O-tetradecanoylphorbol-13-acetate (TPA). In addition, down-regulation of PK-C by chronic treatment with TPA did not abrogate the okadaic acid-dependent induction. These results provide evidence for a novel signal transduction pathway leading to gene regulation that involves protein phosphorylation but is independent of both cAMP-PK and PK-C.

Animals

Isolation of probes specific to human chromosomal region 6p21 from immunoselected irradiation-fusion gene transfer hybrids.

A hybrid cell line (R21/B1) containing a truncated human chromosome 6 (6pter-6q21) and a human Y chromosome on a hamster background was irradiated and fused to A23 (TK-) or W3GH (HPRT-) hamster cells. Clones containing expressed HLA class I genes (4/40) were selected using monoclonal antibodies. These clones were recloned and analyzed with a panel of probes from the HLA region. One hybrid (4G6) contained the entire HLA complex. Two other hybrids (4J4 and 4H2) contained only the HLA class I region, while the fourth hybrid (5P9) contained HLA class I and III genes in addition to other genes located in the 6p21 chromosomal region. In situ hybridization showed that the hybrid cells contained more than one fragment of human DNA. Alu and LINE PCR products were derived from these cells and compared to each other as well as to products from two somatic cell hybrids having the 6p21 region in common. The PCR fragments were then screened on conventional Southern blots of the somatic cell hybrids to select a panel of novel probes encompassing the 6p21 region. In addition, the origin of the human DNA fragments in hybrid 4J4 was determined by regional mapping of PCR products.

Animals

Evaluation of the acrosome reaction using monoclonal antibodies against different acrosomal antigens--comparison with the triple stain technique.

The acrosome reaction of human sperm was evaluated in vitro with the aid of there monoclonal antibodies TüS-1, TüS-19 and TüS-20, which react with antigens in the anterior part of the acrosome. Data were compared with results obtained using the triple stain technique. Seminal smears were performed prior to, and following incubation for 5 and 24 h in Hams-F10 containing 3% human serum albumin. Using the triple stain technique, 15.2 +/- 7.1% of sperm exhibited acrosome activation after 5 h and 16.8 +/- 8.4% after incubation for 24 h. The corresponding values obtained using antibody TüS-1 were 12.9 +/- 5.8 and 13.2 +/- 2.2%, with TüS-19 10.1 +/- 3.8 and 10.8 +/- 1.4% and with TüS-20, 9.0 +/- 3.4 and 10.4 +/- 2.9%. When the same sperm smears were stained firstly with rose Bengal, and secondly with TüS-1 both methods stained the same cells and the same region of the cells, thus indicating that both methods stain the same substrate. Staining of the acrosome with monoclonal antibodies gives clearer results than the triple stain technique, and could be used in preference in future studies dealing with diagnosis of the acrosome reaction in vitro.

Acrosome

Investigations into the pharmacodynamic effects of dermally administered microemulsions containing beta-blockers.

Water uptake from the skin changes dermally applied near-saturated solutions of beta-blockers in microemulsion-bases into supersaturated microemulsions. Due to an enhanced thermodynamic activity, high absorption rates are expected from these preparations. The pharmacodynamic effect after dermal administration of such preparations has been evaluated using rabbits as a suitable in-vivo model. The dose dependency, influence of lipophilicity and of the thermodynamic activity of the drug is described. Assessment of dermal doses which were therapeutically equivalent to i.v. doses as, for example, shown with carazolol is possible. Although not all observed pharmacodynamic effects were due to these influences but rather due to the numerous other skin-vehicle-drug interactions which could not be explained with this model, the presented in-vivo model is helpful in evaluation of beta-blockers which were suitable candidates for transdermal administration.

Administration, Cutaneous

Pharmacodynamic effects of transdermal bupranolol and timolol in vivo: comparison of microemulsions and matrix patches as vehicle.

Transdermal administration of drugs possesses several advantages in therapy, but is limited by generally poor penetration through the skin. The aim of this study was to assess whether in vivo transdermal absorption could be enhanced by using microemulsions (ME) as vehicles. Water uptake from the occluded skin changes the water-free microemulsion base (MEB) into a ME. The increasing content of water decreases the solubility of apolar drugs. This leads to in situ formation of a super-saturated ME that possesses a particularly high absorption rate due to the enhanced diffusion pressure of the drug. A saturated solution of the model drugs bupranolol (B) and timolol (T) in a water-free microemulsion base was applied to an clipped area of the dorsal skin of rabbits with an occlusive patch. Evaluations were made in comparison to matrix patches (M) containing 1.2 mg/cm2 B or 2.0 mg/cm2 T. The beta-blocker dose applied was 2.0 mg/kg body weight throughout the study. The measured parameter of the pharmacodynamic effect was the maximal heart rate (HR) after an i.v. bolus injection of a standard dose of isoproterenol. Observations were made in different intervals over a 10-h time period after application of the patches. The response to isoproterenol was calculated as beta-blocker effect. Faster increasing effects and higher maxima for both drugs was found after application in MEB compared to M. After administration of B and T in MEB the effects were found to be identical, with a maximum (85-90%) after 2 h. Application in M showed B to be less effective (34%, 10h no plateau) than T (74%, 10h). Therefore microemulsions represent an improved vehicle for transdermal administration of test drugs.

Administration, Cutaneous

Ca2+ potentiates cAMP-dependent expression of urokinase-type plasminogen activator gene through a calmodulin- and protein kinase C-independent mechanism.

In the porcine renal epithelial cell line, LLC-PK1, activation of the cAMP-dependent signal transduction pathway induces the urokinase-type plasminogen activator (uPA) gene. We show here that the cAMP response is enhanced when the intracellular calcium concentration is increased. When LLC-PK1 cells were treated with the calcium ionophore ionomycin alone, there was no uPA mRNA accumulation. However, in the presence of ionomycin the dose-response of 8-bromo-cAMP (Br-cAMP) with respect to uPA mRNA accumulation was shifted toward the lower concentrations of Br-cAMP. A Northern blot analysis after the inhibition of RNA synthesis and nuclear run-on assays showed that the synergistic effect of Ca2+ could be attributed to increases in uPA gene transcription and mRNA stability. In the presence of cycloheximide, a protein synthesis inhibitor, uPA mRNA was stabilized, but the effect of ionomycin on Br-cAMP-induced mRNA accumulation was still maintained. The result suggests that the Ca2+, at least on transcription, does not require new protein synthesis. Ionomycin treatment did not modify the activity of the cAMP-dependent protein kinase, suggesting that Ca2+ either affects a step in the pathway between the kinase and the uPA gene, or acts independently of the cAMP-dependent protein kinase pathway. The effect of ionomycin was not suppressed by protein kinase C down-regulation nor by inhibitors of calmodulin. Synergism was also observed when Br-cAMP was replaced with calcitonin, a peptide hormone which is coupled to adenylate cyclase, and when ionomycin was replaced with another ionophore A23187, suggesting that the synergism is due to an interaction between cAMP-dependent and Ca2(+)-dependent signal transduction pathways.

8-Bromo Cyclic Adenosine Monophosphate

Evidence for light-induced release of Ca2+ from intracellular stores in bee photoreceptors.

In the drone retina light elicits an increase in the extracellular Ca2+ concentration ([Ca]o). After withdrawal of extracellular Ca2+ and addition of 1 mM EGTA (ethyleneglycol-bis (beta-aminoethyl ether) N,N,N',N'-tetraacetic acid) a short light flash still caused an increase in [Ca]o as measured with Ca2(+)-sensitive microelectrodes. This increase vanished after a few flashes. When [Ca]o was reduced to 10(-5) M Ca2+ (no EGTA) the rise in Cao disappeared after several light flashes. Subsequent stimulation with a dim steady light produced a decrease in [Ca]o and caused a recovery of the increase in [Ca]o elicited by a test flash. The results show that bee photoreceptors have a light-depletable intracellular Ca2+ store which can be reloaded by dim continuous lights.

Animals

Immunoelectron microscopy of human spermatozoa.

A number of immunocytochemical methods using various markers for electron microscopy have been developed in recent years. The immunogold technique has been especially effective in histotopochemical studies. The value of this technique for demonstrating sperm antigens results from the high electron density of gold, which makes it easily detectable under the electron microscope. The high resolution of the electron microscope permits precise localization of immunologic reactions in the sperm cell. Light microscopy findings can thus be elucidated. We tested a number of monoclonal antibodies that react with sperm antigens. Of three techniques for preparing the spermatozoa, the pre-embedding method and marking of cryoultra-microtome sections proved best.

Fluorescent Antibody Technique

Monoclonal antibodies against antigens expressed by human sperm.

The production and characterization of 21 mouse monoclonal antibodies (TüS1-TüS21) with specificity predominantly for human spermatozoa antigens is described. Reactivity of cells from human ejaculates, peripheral blood and several organs was determined using the alkaline phosphatase-anti-alkaline phosphatase (APAAP)-technique as well as the indirect immunofluorescence test. 15 of the monoclonal antibodies reacted with various regions of human sperm and often also with their precursor cells in the testis. Cross-reactivity with animal spermatozoa was frequently observed.

Acrosome