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Eine Infektion mit dem humanen Cytomegalievirus ist immer noch eine der häufigsten und bedrohlichsten Komplikationen nach einer allogenen Stammzelltransplantation (SCT), welche eine hohe Morbidität und Mortalität verursacht. Die prophylaktische oder preämptive antivirale Chemotherapie konnte den frühen Ausbruch einer CMV-Erkrankung während der ersten 100 Tage nach SCT signifikant reduzieren, jedoch kommt es dadurch häufig zu einem späten Ausbruch der CMV-Erkrankung und schwerwiegenden Nebenwirkungen wie Myelotoxizität und Nephrotoxizität. Zur Bekämpfung und Langzeitkontrolle einer CMV-Infektion ist eine effiziente zellvermittelte CMV-spezifische Immunität unabdingbar. Im Rahmen dieser Dissertation, wurden deshalb drei CMV-Vakzinkandidaten basierend auf dem hoch attenuierten Modifizierten Vaccinia Ankara Virus (MVA), welche stabil pp65 und/oder IE1 (MVA-IE1, MVA-pp65, and MVA-IE1-pp65) exprimieren und zugleich frei von Selektionsmarkern sind, auf ihre Fähigkeit hin untersucht CMV-spezifische T-Zellantworten zu induzieren. Als erstes wurden humane mononukleäre Zellen des periphären Blutes (PBMCs) und Leukozytensubpopulationen (aus Monozyten generierte dendritische Zellen (DCs), Monozyten und B-Zellen) mit MVA infiziert um deren Infektionsrate, Veränderungen in der Expression der Oberflächenmarker und der Zytokinexpression sowie deren Apoptoserate zu untersuchen. Monozyten, DCs und B-Zellen waren besonders empfänglich für eine MVA-Infektion, gefolgt von NK-Zellen. Monozyten wurden stark aktiviert, was sich durch eine erhöhte Expression der kostimulatorischen Moleküle, MHC-Komplexe und CCR7 zeigte, wohingegen DCs eine inkomplette Aktivierung vorwiesen und B-Zellen gehemmt wurden. Des Weiteren wurde die Expression von CXCL10, TNFa, IL-6 und IL-12 signifikant in den Antigen-präsentierenden Zellen (APCs) erhöht, aber die von IL-1b und IL-10 blieb unverändert oder wurde sogar signifikant reduziert. MVA induzierte also eine Th1-polarisierenden Zytokinexpression in den APCs. Allerdings konnten CMV-spezifische T-Zellen nicht mit direkter Antigenpräsentation durch DCs expandiert werden, da die DCs nach Infektion mit MVA schnell durch Apoptose starben und eine unzureichende Expression der kostimulatorischen Moleküle und MHC-Komplexe aufwiesen. Vielmehr konnte gezeigt werden, dass die erfolgreiche Expansion CMV-spezifischer T-Zellen mittels Kreuzpräsentation von Antigenen MVA-infizierter Leukozyten durch DCs erfolgte. Die Phagozytose von apoptotischen Material von MVA-infizierten Leukozyten mit anschließender Antigenprozessierung induzierte eine vollständige Ausreifung der DCs in vitro einhergehend mit erhöhter IL-12-Expression, was erheblich zu einer erfolgreiche T-Zell-Stimulation und –Expansion beitrug. Neben pp65-spezifischen T-Zellen wurden auch IE1-spezifische T-Zellen expandiert, wenn auch in einem geringeren Ausmaß. Der größte Teil der expandierten T-Zellen wies einen Effektor-Gedächtnis-(EM)-Phänotyp auf. Ein kleinerer Anteil besaß jedoch einen zentralen Gedächtnis-(CM)-Phänotyp, welcher bekannt ist für eine Langzeitpersistenz und eine erfolgreiche Etablierung eines T-Zell-Gedächtnis-Pools. Darüber hinaus wurden keine Vaccinia-spezifischen T-Zellen der pockengeimpften Spender expandiert. Wodurch ist die Immunogenität der CMV-Antigene nicht beeinträchtigt ist. Die drei untersuchten MVA-CMV-Vakzinkandidaten erfüllen alle Stabilitäts-, Immunogenitäts- und Sicherheitsbestimmungen der Europäischen Arzneimittelbehörde (EMEA) für virale Vektorimpfstoffe und sind deshalb bereit für die cGMP-Produktion und anschließende klinische Prüfung.
Transcription factor AP-1 modulates the activity of the human foamy virus long terminal repeat
(1991)
The human foamy virus (HFV) contains within the UJ region of its long terminal repeat (L TR) three perfect consensus sequences for the binding of the inducible transcription factor AP-1. Results of DNase I footprint protection and gel retardation assays demonstrated that proteins in extracts of HeLa and BHK-21 cells as weil as bacterially expressed Jun and Fos proteins bind to these AP-1 sites. By conducting transient expression assays using chloramphenicol acetyltransferase plasmids carrying LTR sequences with point-mutated AP-1 sites it was found that the three AP-1 sites contribute to the optimal activity ofthe HFV promoter. It is shown that lnduction of the HFV L TR by 12-O-tetradecanoylphorbol-13-acetate (TPA) and serum factors is mediated through the AP-1 sites.
The long terminal repeat (LTR) of the human spumaretrovirus (HSRV) was examined with respect to its ability to function as transcriptional promotor in virus-infected and uninfected cells. Transient transfections using a plasmid in which the 3' L TR of HSRV was coupled to the bacterial chloramphenicol cetyltransferase (cat) gene revealed that the Ievei of HSRV LTR-directed cat gene expression was markedly increased in HSRV-infected cells compared to uninfected cells. Northern blot analysis of cat mRNA from transfected cultures suggests that transactivation of HSRVdirected gene expression occurs at the transcriptionallevel.
The human foamy virus (HFV) genome possesses three open reading frames (bel I, 2, and 3) located between env and the 3' long terminal repeat. By analogy to other human retroviruses this region was selected as the most Iikely candidate to encode the viral transactivator. ResuIts presented here confirmed this and showed further that a deletion introduced only into the bell open reading frame of a plasmid derived from an infectious molecular clone of HFV abolished transactivation. In contrast, deletions in bel 2 and bel 3 had only minor effects on the ability to transactivate. The role of the bel I genomic region as a transactivator was further investigated by eukaryotic expression of a genome fragment of HFV spanning the bel I open reading frame. A construct expressing bell under control of a heterologous promoter was found to transactivate the HFV long terminal repeat in a dose-dependent fashion. Furthermore, it is shown that the U3 region of the HFV long terminal repeat is sufficient to respond to the HFV transactivator.
Aim: To examine peripheral blood and skeletal muscle from patients with chronic fadgue syndrome for exogenous retrovirus. Methods: Blood samples from 30 patients and muscle biopsy specimens of 15 patients were examined for retroviral sequences by DNA extraction, polymerase chain reacdon (PCR), and Southern blotting hybridisation. Sera were examined for human foamy virus by western immunoblotting and indirect immunofluorescence techniques. Results: No difference between the padent and control populations was found for any of the PCR primer sets used (gag, pol, env, and tax regions of HTLV VII). An endogenous gag band was observed in both the padent and control groups. All sera were negative for antibody to human foamy virus. Conclusion: The results indicate that there is no evidence of retroviral involvement in the chronic fatigue syndrome.
DNAs from peripheral blood mononuclear cells (PBMCs) of 21 patients with multiple sclerosis (MS), 1 patient with tropical spastic paraparesis (TSP) as well as DNAs from brain and spinal cord of 5 MS cases and 3 controls were examined for human T-cell lymphotropic virus (HTLV)-related sequences by polymerase chain reaction. The primers used were derived from the HTLV-1 gag, env and tax genes. Amplified products were separated on agarase gels, blotted onto nylon membranes and hybridized to specific radiolabelled oligonucleotides. The sensitivity of amplification and hybridization was one copy of target DNA in 10\8^5\) cellular genomes. None of the specimens was positive for HTLV-1 sequences except the TSP probe. These negative data are all the more significant because brain -material from MS patients was used in these studies. Our studies thus fail to support speculations that HTLV-I is involved in the aetiology of multiple sclerosis.
In order to establish criteria for the Serodiagnosis of foamy virus infections we investigated the extent to which sera from iofected individuals of human and primate origin react with structural and non-structural virus proteins in immunoblot assays. Using lysates from infected cells as the source of virus antigen, antibodies were preferentially detected against the Gag proteins and the non-structural Bet protein. Both the Gag precursor molecules of 70 and 74K apparent M\(_r\) and the cytoplasmic 60K M\(_r\) Bet protein were found to be phosphorylated, the latter being synthesized in large amounts in infected cells. Rahbit antiserum raised against recombinant human foamy virus (HFV) Gag major capsid protein cross-reacted with foamy viruses of chimpanzee, gorilla, orang-utan, rhesus monkey and Mrican green monkey origin. This was reßected by a broad cross-reactivity of the respective monkey sera to the Gag proteins of the various foamy virus isolates. Cross-reactivity of antisera against the Bet protein was restricted to viruses from man and the great apes. Recombinant Gag and Bet proteins expressed in prokaryotes or in insect cells were readily recognized by foamy virus-positive primate sera. Screening serum samples from chimpanzees with HFV Gag and Bet proteins expressed by recombinant baculoviruses revealed that 18 out of 35 (52%) were positive for Gag antibodies. Of these, 13 (72 o/o) showed antiborlies against the Bet protein, indicating that Bet antigen is of value in sero1ogical screening for foamy virus infections.
Progressive encephalopathy and myopathy in transgenic mice expressing human foamy virus genes
(1991)
Transgenie mice carrying the bel region of human foamy retrovirus (HFV) under transcriptional control of its own long terminal repeat expressed tbe transgene in their centrat nervous systems and in smootb and striated muscle tissues. The animals developed a progressive degenerative disease of tbe centrat nervous system and of the striated muscle. Because expression of tbe transgene was dosely correlated witb the appearance of structural damage and inflammatory reactions were scanty, the disease is likely to be caused directly by tbe HFV proteins. These unexpected findings call for a reevaluation of tbe patbogenic potential of HFV in humans.
Recombinant clonesthat represent the 3' part ofthe genome of the human spumaretrovirus (foamy virus) were established from viral DNA and from DNA complementary to viral RNA. The recombinant clones were characterized by blot hybridizations and nucleotide sequence analysis. The deduced protein sequence of the clones at their 5' ends was found to be homologous to the 3' domain of retroviral reverse transcriptases. Downstream of a small intergerne pol-env region a long open reading frame of 985 amino acid residues was identified that according to its genomic location, size, glycosylation signals, and hydrophobicity protile closely resembles the lentiviral env genes. The spumaretroviral env gene is followed by two open reading frames, termed bel-l and bel-2 which are located between env and the long terminal repeat region. The long terminal repeat of 1259 nucleotides is preceded by a polypurine tract and contains the canonical signal sequences characteristic for transcriptional regulation of retroviruses. The provisional classitication of the spumaretrovirus subfamily is discussed.
During molecular cloning of proviral DNA of human. spumaretroVirus, various recombinant clones were estabUshed and analyzed. Blot hybridization revealed that one of the recoinbinant plasmids bad the characteristic features of a member of the long interspersed repetitive sequences famlly. The DNA element was analyzed by restrictioil mapping and nuelootide sequencing. It showed a high degree of amino acid sequence homology of 54.3% when conipared with the 5'-terminal part of the pol gelie product of the murine retrotransposon LIMd. The 3' region of the cloned DNA element encodes proteins witb an even higher degree of homology of 67.4% in comparison to the corresponding parts of a member of the primate Kpnl sequence family.
All foamy viruses give rise to a strong nuclear staining when infected cells are reacted with sera from infected hosts. This nuclear ftuorescence distinguishes foamy viruses from all other retroviruses. The experiments reported here indicate that the foamy virus Gag precursor protein is transiently located in the nuclei of infected cells and this is the likely reason for the typical foamy virus nuclear fluorescence. By using the vaccinia virus expression system, a conserved basic sequence motif in the nucleocapsid domain of foamy virus Cag proteins was identified to be responsible for the nuclear transport of the gag precursor molecule. Tbis motif was also found to be able to direct a heterologous protein, the Gag protein of human immunodeficiency virus, into the nucleus.
Rhesus monkeys (M. mulatta) were i.v. infected with SIV mac251. Three phases of lymph node changes were observed. 1: physiological follicular hyperplasia (3 and 6 weeks p.i.). 2: Alterations of germinal centers: loss of follicular mande zone, fragmentation or sclerosis (12 and 24 weeks p.i.). 3: Partial depletion of T-lymphocytes, accumulation of plasma cells, increased numbers of syncytial giant cells, hemophgocytosis in the sinuses (ab out 1 year p.i.). The thymus of the juvenile animals showed first changes 12 and 24 weeks after infection with focalloss of immature (and Ki-67 positive) cortical thymocytes, leading to severe accidental involution of the thymuses one year after infection and reduced numbers of Hassalls corpuscles. These investigations show the value of this animal model for the study of morphology and pathogenesis of AIDS.
DNA ofhuman spumaretrovirus (HSRV) was cloned from both cDNA and from viral DNA into phage A and bacterial plasmid vectors. The recombinant plasm.ids harboring viral DNA were characterized by Southern blot hybridization and restriction mapping. Physical maps were constructed from cDNA and found to be colinear with the restriction maps obtained from viral DNA. The recombinant clones isolated contained viral DNA inserts which rangein size from 2.2 kb to 15.4 kb. The recombinant clones allowed to construct a physical map of the complete HSRV provirus of 12.2 kb.