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Biomedical subjects

B Baum

Publications and source records attributed to B Baum.

At least 19 recordsLinked to original sources

Morphological findings in lymphatic tissues of sheep following oral application of the immunosuppressive mycotoxin mycophenolic acid.

Mycophenolic acid (MPA) is applied in immunosuppressive therapy after organ transplantation. As a common contaminant in silage, this substance is also frequently fed to sheep unintentionally. In this study, the effect of MPA on the immune system of sheep was examined. Four groups of 9 sheep each were fed 0, 0.5, 1.2, or 5 mg of MPA per kg body weight per day for 6 weeks. Then, the animals were slaughtered and various organs were examined macroscopically, histologically, and immunohistochemically. No effect of MPA on general health was detected. With increasing dose of MPA, germinal centres in the retropharyngeal lymph nodes displayed an activated morphology with numerous centroblasts. In the highest dose group, the sheep showed shrinkage of thymic lobules. The numbers of IgG or IgM positive plasma cells decreased in the ileum with increasing MPA-doses. These results suggest, that MPA in a high concentration may affect the morphology of immune organs of sheep.

Administration, Oral↗

[Indirect costs in idiopathic Parkinson's disease].

The economic impact of parkinsonism has been getting more significant due to the increasing prevalence of Parkinson's disease and the modern therapies available nowadays. The present study is supposed to update the existing databases and to provide a sound foundation for rational decision-making in the health care sector. It does not only focus on the direct costs of this disease incurred by 75 patients over a longer period, but also and for the first time, takes a look on the indirect cost as well. The study shows that the expenses for PD-related house rebuilding and early retirement make up for a substantial share among the indirect costs. In the overall analysis, the ratio between both, direct and indirect costs appear to be relatively balanced with slight domination of the direct costs.

Aged↗

[Hyperextension of fetlock joints in German Holstein and German Holstein-Limousin crossbred calves].

In two different dairy farms six calves exhibiting bilateral flexion of the fetlock joints in front or rear legs were born in 2000 to 2002. Four of the affected calves from the same farm were crossbred between German Holstein cows with red and white coat colour and a bull of the breed Limousin. The other two affected calves born on another farm were purebred German Holsteins with a black and white coat colour. The tests for BVD virus antigen and antibodies were negative in all affected calves. Three of the calves showed a lower selen and a higher glutamate dehydrogenase concentration in the analyses of blood metabolites. Two crossbred calves showed a degeneration of the liver with a progressive periportal fibrosis in a histological examination. In one calf an edema of astrocytes of the central nervous system was seen. The analysis of the pedigrees revealed for the four crossbred calves the Limousin bull as common ancestor and the mothers of the calves as relatives. For the affected purebred German Holstein calves also a sire was identified as a common ancestor. The pedigrees support inheritance through a monogenic autosomal recessive locus or more recessive gene loci with variable expressivity. However, the analysis could not clarify whether different gene loci are responsible for the congenital anomalies observed in the calves from the two farms and thus, the observed anomalies may be different genetic entities. Obvious environmental reasons were not found.

Animals↗

Multifocal pleural cystic squamous metaplasia in a horse with chronic obstructive bronchopneumonia.

A 10-year-old Knabstrupper stallion was euthanatized because of severe dyspnea and exercise intolerance. Postmortem examination revealed diffuse severe alveolar emphysema and chronic fibrosing pleuritis of the caudal lung. Parts of both caudal lung lobes were covered with multiple raised firm gray to yellow plaques. Histologically, these areas consisted of circumscribed pleural fibroses and cysts of metaplastic keratinizing squamous epithelium. Immunohistochemistry revealed intense labeling for cytokeratins 5/6 and 10. In addition, caudal lung lobes were severely affected by a chronic partially obliterative bronchiolitis and peribronchiolitis with multifocal pleural involvement.

Animals↗

A functional genomic analysis of cell morphology using RNA interference.

BACKGROUND: The diversity of metazoan cell shapes is influenced by the dynamic cytoskeletal network. With the advent of RNA-interference (RNAi) technology, it is now possible to screen systematically for genes controlling specific cell-biological processes, including those required to generate distinct morphologies. RESULTS: We adapted existing RNAi technology in Drosophila cell culture for use in high-throughput screens to enable a comprehensive genetic dissection of cell morphogenesis. To identify genes responsible for the characteristic shape of two morphologically distinct cell lines, we performed RNAi screens in each line with a set of double-stranded RNAs (dsRNAs) targeting 994 predicted cell shape regulators. Using automated fluorescence microscopy to visualize actin filaments, microtubules and DNA, we detected morphological phenotypes for 160 genes, one-third of which have not been previously characterized in vivo. Genes with similar phenotypes corresponded to known components of pathways controlling cytoskeletal organization and cell shape, leading us to propose similar functions for previously uncharacterized genes. Furthermore, we were able to uncover genes acting within a specific pathway using a co-RNAi screen to identify dsRNA suppressors of a cell shape change induced by Pten dsRNA. CONCLUSIONS: Using RNAi, we identified genes that influence cytoskeletal organization and morphology in two distinct cell types. Some genes exhibited similar RNAi phenotypes in both cell types, while others appeared to have cell-type-specific functions, in part reflecting the different mechanisms used to generate a round or a flat cell morphology.

Animals↗

[Bronchopneumonia and polyarthritis due to Mycoplasma bovis in a calf].

This case report describes gross lesions and histopathological findings in a 3-months-old calf originating from a feedlot with approximately 400 cattle. In this animal and additional 14 cattle of similar age, which were kept together in the same stable, swollen joints had occurred suddenly. The examination of this calf showed that a severe polyarthritis induced by haematogenous spread of Mycoplasma bovis following bronchopenumonia was present, which was characterised by necrotising lesions of the joint capsules and severe cartilage erosions.

Animals↗

Saccharomyces boulardii and bacillus cereus var. Toyoi influence the morphology and the mucins of the intestine of pigs.

The mode of action of probiotics is still incompletely understood. To study the interactions between probiotic micro-organisms and the host their effects on morphology and mucins of the intestinal mucosa were investigated. Fifteen clinically healthy weaned pigs were divided into three groups and received either Saccharomyces boulardii or Bacillus cereus var. toyoi or were left untreated. Sections of duodenum, proximal and mid jejunum, ileum, caecum, and colon were examined. An increase of villus length in the small intestine and a decrease in the number of goblet cells with 2.6-sialylated mucins in the large intestine were observed in both treatment groups. There were no differences in crypt morphology, number of Ki67-positive cells, total number of goblet cells and number of goblet cells with acidic, neutral, sulphated, or 2.3-sialylated mucins between groups. The results indicate an effect of Saccharomyces boulardii and Bacillus cereus var. toyoi on the intestinal architecture of pigs.

Administration, Oral↗

Spatial control of the actin cytoskeleton in Drosophila epithelial cells.

The actin cytoskeleton orders cellular space and transduces many of the forces required for morphogenesis. Here we combine genetics and cell biology to identify genes that control the polarized distribution of actin filaments within the Drosophila follicular epithelium. We find that profilin and cofilin regulate actin-filament formation throughout the cell cortex. In contrast, CAP-a Drosophila homologue of Adenylyl Cyclase Associated Proteins-functions specifically to limit actin-filament formation catalysed by Ena at apical cell junctions. The Abl tyrosine kinase also collaborates in this process. We therefore propose that CAP, Ena and Abl act in concert to modulate the subcellular distribution of actin filaments in Drosophila.

Actin Cytoskeleton↗

A cyclase-associated protein regulates actin and cell polarity during Drosophila oogenesis and in yeast.

BACKGROUND: A polarised cytoskeleton is required to pattern cellular space, and for many aspects of cell behaviour. While the mechanisms ordering the actin cytoskeleton have been extensively studied in yeast, little is known about the analogous processes in other organisms. We have used Drosophila oogenesis as a model genetic system in which to investigate control of cytoskeletal organisation and cell polarity in multicellular eukaryotes. RESULTS: In a screen to identify genes required for Drosophila oocyte polarity, we isolated a Drosophila homologue of the yeast cyclase-associated protein, CAP. Here we show that CAP preferentially accumulates in the oocyte, where it inhibits actin polymerisation. CAP also has a role in oocyte polarity, as cap mutants fail to establish the proper, asymmetric distribution of mRNA determinants within the oocyte. Similarly in yeast, loss of CAP causes analogous polarity defects, altering the distribution of actin filaments and mRNA determinants. CONCLUSIONS: This study identifies CAP as a new effector of actin dynamics in Drosophila. As CAP controls the spatial distribution of actin filaments and mRNA determinants in both yeast and Drosophila, we conclude that CAP has an evolutionarily conserved function in the genesis of eukaryotic cell polarity.

Actins↗

Cdc18 transcription and proteolysis couple S phase to passage through mitosis.

In fission yeast, cdc18p plays a critical role in bringing about the onset of S phase. We show that cdc18p expression is subject to a complex sequence of cell cycle controls which ensure that cdc18p levels rise dramatically as cells exit mitosis, before the appearance of CDK activity in G1. We find that transcription of cdc18, together with the transcription of other cdc10p/res1p targets, is first initiated as cells enter mitosis and continues even in cells arrested in mitosis with highly condensed chromatin. However, cdc18p cannot accumulate during mitosis because it is targeted for proteolysis by mitotic cdc2p-protein kinase-mediated phosphorylation. On exit from mitosis, the cdc2p mitotic kinase activity falls, stabilizing cdc18p, which then rapidly accumulates. This combination of mitotic transcription and CDK-mediated proteolysis ensures that progression through mitosis simultaneously prepares cells for DNA replication. During S phase, cdc18 transcription is then switched off, preventing the re-initiation of DNA synthesis until the completion of the next round of mitosis.

CDC2 Protein Kinase↗

Control of S-phase periodic transcription in the fission yeast mitotic cycle.

In fission yeast, passage through START and into S-phase requires cyclin-dependent kinase (CDK) activity and the periodic transcription of genes essential for S-phase ('S-phase transcription'). Here we investigate the control of this transcription in the mitotic cell cycle. We demonstrate that the periodicity of S-phase transcription is likely to be controlled independently of CDK activity. This contrasts with the equivalent system in budding yeast. Furthermore, the CDK function required for S-phase acts after the onset of S-phase transcription and after the accumulation of cdc18p, a critical target of this transcriptional machinery. We investigate the role of individual components of the S-phase transcriptional machinery, cdc10p, res1p, res2p and rep2p, and define a new role for res2p, previously demonstrated to be important in the meiotic cycle, in switching off S-phase transcription during G2 of the mitotic cycle. We show that the presence of the in vitro bandshift activity DSC1, conventionally thought to represent the active complex, requires res2p and correlates with inactive transcription. We suggest that S-phase transcription is controlled by both activation and repression, and that res2p represses transcription in G2 of the cell cycle as a part of the DSC1 complex.

CDC2 Protein Kinase↗

Human Bak induces cell death in Schizosaccharomyces pombe with morphological changes similar to those with apoptosis in mammalian cells.

Apoptosis as a form of programmed cell death (PCD) in multicellular organisms is a well-established genetically controlled process that leads to elimination of unnecessary or damaged cells. Recently, PCD has also been described for unicellular organisms as a process for the socially advantageous regulation of cell survival. The human Bcl-2 family member Bak induces apoptosis in mammalian cells which is counteracted by the Bcl-x(L) protein. We show that Bak also kills the unicellular fission yeast Schizosaccharomyces pombe and that this is inhibited by coexpression of human Bcl-x(L). Moreover, the same critical BH3 domain of Bak that is required for induction of apoptosis in mammalian cells is also required for inducing death in yeast. This suggests that Bak kills mammalian and yeast cells by similar mechanisms. The phenotype of the Bak-induced death in yeast involves condensation and fragmentation of the chromatin as well as dissolution of the nuclear envelope, all of which are features of mammalian apoptosis. These data suggest that the evolutionarily conserved metazoan PCD pathway is also present in unicellular yeast.

Apoptosis↗

Cytokines modulate interleukin-6 production by human salivary gland cell line.

The ability of HrTNF-alpha, HrIL-1 beta, and HrIFN-gamma to modulate IL-6 production by cultured human salivary cell line (HSG) was examined. IL-6 activity was measured by the hybridoma growth factor biologic activity. HrTNF-alpha had a significant dose-dependent effect, whereas HrIL-1 beta and HrIFN-gamma had moderate and minor effects, respectively. Maximal effect (920 units) was noted when cytokines were applied in combination (1000 units HrIFN-gamma and 20 units HrTNF-alpha) and incubated with human salivary gland cells for 72 hr. The same combination of cytokines had also a marked inhibitory effect (70% of control) on human salivary gland cell growth. This is the first report of these concomitant phenomena in a human cell line originating from salivary tissue.

Cell Division↗

YMC1, a yeast gene encoding a new putative mitochondrial carrier protein.

We have cloned and sequenced a Saccharomyces cerevisiae gene coding for a protein with significant similarities to the mitochondrial carrier family. The gene we termed YMC1 (yeast mitochondrial carrier) is located on chromosome XVI, closely downstream of ARO7 encoding chorismate mutase.

Amino Acid Sequence↗

The deduced sequence of the transcription factor TFIIIA from Saccharomyces cerevisiae reveals extensive divergence from Xenopus TFIIIA.

TFIIIA is an RNA polymerase III transcription factor that binds to the internal control region of the 5 S RNA gene as the first step in the assembly of a transcription complex. We have identified the gene encoding TFIIIA from Saccharomyces cerevisiae. Protein synthesized in vitro from the cloned gene has the same size, DNA-binding properties, and transcription factor activity as does purified yeast TFIIIA. Examination of the deduced sequence of the 50-kDa yeast transcription factor revealed the presence of nine zinc-finger motifs, a characteristic of Xenopus TFIIIA. Although the conservation of these nine putative DNA-binding domains is striking, the amino acid sequence throughout the corresponding fingers of the yeast and amphibian TFIIIAs has diverged extensively and in many instances the spacing between the residues that coordinate the zinc ions differs between the two proteins. A unique feature of the yeast protein is an 81-amino acid domain interrupting the repeated zinc-finger motifs between fingers 8 and 9. Additionally, the yeast and amphibian proteins differ in both the size and sequence of the amino- and carboxyl-terminal domains flanking the zinc fingers. The gene encoding yeast TFIIIA is present in single copy in the S. cerevisiae genome and is essential for cell viability. A carboxyl-terminal truncated form of the protein containing 4.5 zinc-finger motifs retains the ability to bind to DNA but is no longer active in promoting transcription in vitro.

Amino Acid Sequence↗

Mapping the putative RNA helicase genes by sequence overlapping.

An 'electronic' gene mapping procedure based on computer-aided search for overlapping gene sequences was used to identify adjacent genes and localize several putative RNA helicase genes to different chromosomes. PRP28 and AMD1 genes map to the right arm of chromosome IV next to sup2, which encodes a tyrosine tRNA. PRP16, previously mapped to chromosome XI, is tightly linked to MRP-L20. PRP22 is adjacent to PRE1, whose chromosomal location is currently unknown. The utility of this approach in yeast gene mapping is evaluated.

Chromosome Mapping↗