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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.
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.
Bacterial glucuronidase as general marker for oncolytic virotherapy or other biological therapies
(2011)
Background: Oncolytic viral tumor therapy is an emerging field in the fight against cancer with rising numbers of clinical trials and the first clinically approved product (Adenovirus for the treatment of Head and Neck Cancer in China) in this field. Yet, until recently no general (bio)marker or reporter gene was described that could be used to evaluate successful tumor colonization and/or transgene expression in other biological therapies. Methods: Here, a bacterial glucuronidase (GusA) encoded by biological therapeutics (e.g. oncolytic viruses) was used as reporter system. Results: Using fluorogenic probes that were specifically activated by glucuronidase we could show 1) preferential activation in tumors, 2) rena l excretion of the activated fluorescent compounds and 3) reproducible detection of GusA in the serum of oncolytic vaccinia virus treated, tumor bearing mice in several tumor models. Time course studies revealed that reliable differentiation between tumor bearing and healthy mice can be done as early as 9 days post injection of the virus. Regarding the sensitivity of the newly developed assay system, we could show that a single infected tumor cell could be reliably detected in this assay. Conclusion: GusA therefore has the potential to be used as a general marker in the preclinical and clinical evaluation of (novel) biological therapies as well as being useful for the detection of rare cells such as circulating tumor cells
The human foamy virus (HFV) bel-l transactivator protein was expressed in insect cells by a recombinant baculovirus. For the generation of the recombinant baculovirus, Acbel-1, the bel-l gene of an HFV mutant was used, that bears truncations in the bel-l overlapping bel-2 open reading frame. Acbel-1 infected Sf9 cells produced high amounts of recombinant protein of the same electrophoretic mobility (36 kD) as bel-l expressed in mammalian cells. The baculovirus expressed bel-l proteinwas readily identified by a polyclonal rabbit serum directed against bel-1 in immunoblot assay. As in mammalian cells, bel-l was predominantly localized to the nucleus of Acbel-1 infected insect cells. The baculovirus expressed bel-1 proteinwill be of use to determine the action of this novel viral transactivator more precisely.
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.
Die Morphogenese von Viruspartikeln und deren Freisetzung aus infizierten Zellen sind späte Schritte im viralen Lebenszyklus. Matrix-Proteine (M) negativsträngiger RNA-Viren und Retroviren, bei denen es sich um periphere Membran-assoziierte Proteine handelt, spielen für diese Prozesse eine besonders wichtige Rolle. Im Verlauf der Masernvirus (MV)-Infektion interagiert das M-Protein mit dem viralen Nukleoproteinkomplex im Innern der Viruspartikel einerseits und mit den viralen Glykoproteinen auf der Oberfläche andererseits. Die Bedeutung des MV M-Proteins für die Partikelproduktion und sein intrazellulärer Transport wurden bislang wenig untersucht. In dieser Arbeit konnte gezeigt werden, dass das MV M-Protein in höhermolekularen Komplexe oligomerisiert und transient mono-ubiquitiniert vorliegt. Beide biochemischen Eigenschaften des M-Proteins sind wahrscheinlich für die Partikelentstehung von Bedeutung, wie durch Studien an M-Protein-Orthologen anderer Viren bereits belegt wurde. Das MV M-Protein assoziierte mit Membranen und speziellen Membranmikrodomänen, sogenannten Detergenz-resistenten Membranfraktionen (DRMs), und vermittelte nach transienter Expression in Fibroblasten die Produktion Virus-ähnlicher Partikel (virus-like particles, VLPs). Es ist beschrieben, dass umhüllte Viren präferenziell aus DRMs freigesetzt werden. Die Koexpression des MV-Glykoproteins F erhöhte den Anteil mit DRM-assoziierten M-Proteins um ein Vierfaches, steigerte jedoch, wie auch das H-Protein, die Effizienz der VLP-Freisetzung nicht. Überraschenderweise waren beide jedoch selbst in der Lage VLPs zu induzieren. Die Effizienz der VLP-Produktion war gering und entsprach der der Viruspartikelfreisetzung. Dendritische Zellen (DCs) sind für MV semipermissiv. Obwohl alle viralen Proteine synthetisiert werden, wird kein infektiöses Virus freigesetzt. In dieser Arbeit konnte gezeigt werden, dass die intrazelluläre Lokalisation der M-, H- und N-Proteine dramatisch von der in der produktiv infizierbaren Fibroblastenzelllinie HeLa abweicht. Während in infizierten HeLa-Zellen das M-Protein mit Lamp-1-positiven späten Endosomen kolokalisierte, akkumulierten in DCs alle untersuchten viralen Proteine in einem spät endosomalen Kompartiment, das das Tetraspanin CD81, aber nicht Lamp-1, enthielt und möglicherweise an der MHC-Klasse-II-abhängigen Antigenpräsentation beteiligt ist.
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.