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Biomedical subjects

M Hagenhofer

Publications and source records attributed to M Hagenhofer.

9 recordsLinked to original sources

Alternatively spliced mRNA molecules of the thrombospondin receptor (CD36) in human PBMC.

We employed reverse transcription polymerase chain reaction (RT-PCR) to detect alternatively spliced CD36 mRNA in human peripheral blood mononuclear cells (PBMC). Sequencing of cloned cDNA revealed alternatively spliced mRNA molecules in 13 out of 39 clones. We observed exon skipping of up to 10 out of 12 coding exons in eight alternative transcripts. Additionally, in five of the transcripts, alternative splice donor or acceptor sites were used during mRNA maturation. Considering the CD36 molecule serves many functions in coagulation, host defence, lipid metabolism, and scavenging, we speculate that the proteins encoded by the alternatively spliced mRNA molecules may be involved in regulation of both CD36 gene expression and function.

Alternative Splicing↗

Transcriptional activation of endogenous retroviral sequences in human epidermal keratinocytes by UVB irradiation.

Ultraviolet radiation is a pathogenic factor in various diseases, e. g., autoimmune disorders such as lupus erythematosus. On the other hand, endogenous retroviruses are discussed as etiologic agents in lupus erythematosus. Therefore, we investigated the influence of ultraviolet irradiation on expression of human endogenous retroviral sequences and human endogenous retroviral sequence promoter-driven transcription of cellular genes using human epidermal keratinocytes as a model system. First, conserved sequences of endogenous retroviral pol genes were amplified from cellular mRNA by reverse transcriptase polymerase chain reaction with degenerate oligonucleotide primers. Polymerase chain reaction products were hybridized in a reverse dot blot hybridization assay to a representative number of distinct cloned human endogenous retroviral pol fragments. Using this method, we could show that irradiation with 30 mJ per cm2 ultraviolet B activates transcription of various endogenous retroviral pol sequences in primary epidermal keratinocytes as well as in a spontaneously immortalized keratinocyte cell line (HaCaT). Interestingly, some of these sequences were found to be closely related to pol sequences of human endogenous retroviral sequences which have been shown to be expressed in autoimmune patients. Analysis of human endogenous retroviral pol expression in vivo using skin biopsies of lupus erythematosus patients revealed similar activation patterns. In a second approach, ultraviolet B- induced chimeric transcripts were isolated which are initiated by human endogenous retroviral promoters and proceed into cellular sequences using a newly established modified differential display polymerase chain reaction technique. The activation of human endogenous retroviral sequence transcription by ultraviolet B may contribute to the pathogenesis of lupus erythematosus, where inappropriate antigenic presentation of ultraviolet B-induced viral and cellular proteins could stimulate autoantibody production.

Base Sequence↗

Impaired phagocytosis of apoptotic cell material by monocyte-derived macrophages from patients with systemic lupus erythematosus.

OBJECTIVE: To investigate whether the established impaired phagocyte function in systemic lupus erythematosus (SLE) patients also affects apoptotic cell clearance. Accumulation of apoptotic waste as a source for autoantigens that induce and maintain autoimmune responses is discussed. METHODS: Apoptosis was detected by morphology and propidium iodide staining. In vitro phagocytosis of autologous apoptotic cells in cultured peripheral blood mononuclear cells was evaluated microscopically. Cross-feeding experiments were performed to investigate phagocytosis of heterologous apoptotic cells by in vitro-differentiated macrophages. Furthermore, the effect of annexin V on the phagocytosis of apoptotic cells was investigated. RESULTS: Reduced clearance of apoptotic cells in SLE patients was observed. The defective clearance appeared to reflect phagocyte dysfunction and not an abnormal execution of apoptosis. A similar picture was seen when in vitro-differentiated macrophages from control populations were treated with annexin V. CONCLUSION: Noninflammatory engulfment phagocytosis of apoptotic cells is decreased in SLE patients. Persistently circulating apoptotic waste may encounter inflammatory removal pathways and serve as immunogen for the induction of autoreactive lymphocytes and as antigen for immune complex formation.

Annexin A5↗

UV-B irradiated cell lines execute programmed cell death in various forms.

We investigated changes typical for apoptosis in various cell lines after UV-B irradiation. Using established methods for detection of apoptosis we demonstrate changes of cellular morphology, phosphatidylserine (PS) exposure, ollgonucleosomal DNA fragmentation and generation of hypochrome nuclei. To isolated high-molecular-weight (hmwt) DNA fragments we engaged a new method avoiding pulse field gel electrophoresis. Most UV-B irradiated cell lines showed oligonucleosomal DNA fragmentation, hypochrome nuclei, morphological changes, annexin-V binding and positive TUNEL reaction. However, no oligonucleosomal DNA fragmentation could be detected in Raji and HaCaT cells. Whereas HaCaT cells displayed all other changes typical for apoptosis, Raji cells were TUNEL negative, formed low amounts of hmwt DNA and showed an 'atypically' low hypochrome shift. Nevertheless, UV-B irradiated Raji cells excluded propidium iodide (PI), bound annexin-V and stopped proliferation. This suggests that Raji cells underwent growth arrest with exposure of PS being the only feature of apoptosis. However, in the presence of phagocytes expressing the phosphatidylserine receptor these cells would share the removal pathway with apoptotic cells. Since UV-B induced programmed cell death differs in dependence of cells under investigation, the failure to detect oligonucleosomal DNA fragmentation or chromatin condensation is not suitable to exclude programmed (apoptotic?) cell death.

Journal Article↗

Induction of apoptosis reduces immunogenicity of human T-cell lines in mice.

Apoptotic cells, e.g. postinflammatory neutrophils, were reported to be engulfed by phagocytes without induction of an inflammatory response. We investigated the humoral immune response of BALB/c mice after repeated injection of viable or apoptotic human T cells. Following interleukin-2 (IL-2) deprivation, phytohaemagglutinin (PHA)/IL-2 expanded human T-cell lines were irradiated with UV-B light to induce apoptosis, confirmed by propidium iodide staining of Triton X-100-lysed cells. Indirect immunofluorescence was used to detect antilymphocyte antibodies 7 days after each injection. We found high levels of antilymphocyte antibodies in all animals immunized with viable T cells, whereas animals injected with apoptotic cells showed a significantly reduced humoral immune response. We conclude that apoptotic cells induce poor xenoreactive T-cell responses when compared with viable cells.

Animals↗

Retrovirus-associated rheumatic syndromes.

The influence of environmental factors in the initiation of autoimmune rheumatic diseases is still under debate. Infections with viruses (e.g., retroviruses) or expression of gene products encoded by endogenous retroviruses are believed to contribute to both loss of tolerance for autoantigens and immunosuppression. In various rheumatic disorders the detection of retroviral antibodies provides evidence for retroviral gene expression and suggests a role in the etiopathogenesis. Molecular mimicry, defects in apoptosis, altered autoantigens, and alterations of monocyte or macrophage as well as dendritic cell functions may contribute to the molecular mechanisms causing the loss of tolerance. On the other hand, destruction of lymphocytes during lytic retrovirus infections as well as envelope gene-env derived immunosuppressive retroviral gene products may prevent chronic inflammatory diseases and tissue destruction. Furthermore, retrovirus encoded super-antigens with the potency to skew the T-cell repertoire may seriously modify the host's immune system.

Acquired Immunodeficiency Syndrome↗

What triggers anti-dsDNA antibodies?

Analysis of somatic mutations revealed that induction of anti-dsDNA autoantibodies from SLE patients are antigen driven and thus T cell dependent. Since DNA per se has repeatedly been shown not to be immunogenic, various mechanisms leading to the production of anti-dsDNA-antibodies have been discussed including the role of oligonucleosomes. In the present study we demonstrate that the percentage of macrophage engulfing apoptotic cell material was significantly reduced in SLE as compared to control patients. These data suggest that, in contrast to a non-inflammatory clearance of apoptotic cell, phagocytosis of apoptotic cell material may be decreased in SLE patients, possibly leading to a presentation of autoantigens and thus possibly triggering an autoantibody response to nucleoproteins.

Antibodies, Antinuclear↗

Retroviruses and systemic lupus erythematosus.

In some animal models of autoimmune diseases the roles of exogenous and endogenous retroviruses are clearly defined. In ungulates caprine arthritis encephalitis virus, equine infectious anemia virus or Maedi-Visna virus infections cause a well-defined autoimmune disease and the appearance of seropositivity of the animals is of diagnostic value. Likewise, in MRL lpr/lpr mice insertion of a retrotransposon into the fas gene could clearly be shown to cause survival of autoreactive lymphocytes. Despite intensive research in this field over a long period of time, molecular data on retroviral involvement in either etiology or pathology of human SLE and other autoimmune rheumatic diseases remain rather scarce. However, the analysis of retroviral antibodies and antigens in human autoimmune disease is undoubtedly important with regard to the search for retroviruses as disease-causing agents.

Animals↗

Small DNA fragments isolated from human T-cell clones are enriched in sequences involved in DNA bending.

IL-2 deprivation induces apoptosis in human IL-2-dependent T-cell clones. This process is characterized by typical cell morphology, changes in the cellular membranes and fragmentation of chromatin into units of single and multiple nucleosomes. We isolated apoptotic DNA of an IL-2-deprived T-cell clone and sequenced randomly selected fragments representing single and multiple nucleosomes.The frequency of phased adenosine tracts was markedly increased in the small apoptotic fragments as compared to oligonucleosomes. Our results thus indicate that chromatin fragmentation in human apoptotic T-cells is not random but preferentially involves DNA sequences with the capability to form bent DNA. Whether this indicates a colocalization of DNase cleavage sites and phased adenosine tracts on the chromosomes or a bias in selecting sites for apoptotic DNA fragmentation is discussed. Analysing the underlying mechanisms will shed new light on DNA degradation in apoptosis.

Journal Article↗