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A Rethwilm

Publications and source records attributed to A Rethwilm.

67 records · Page 4Linked to original sources

Human foamy virus: an underestimated neuropathogen?

Human foamy virus (HFV) is a recently characterized retrovirus which was originally isolated from patients with various neoplastic and degenerative diseases. However, until today it has not been possible to identify HFV as the causative agent of any disease and little is known about its prevalence in human populations. Like HTLV and HIV, HFV encodes the three structural retroviral genes, gag, pol and env, and an additional region containing three open reading frames, bel-1 to bel-3. Bel-1 activates transcription of the long terminal repeat of HFV and HIV. In order to study the consequences of expressing HFV regulatory genes and to investigate a possible pathogenic potential of HFV, we have introduced parts of the HFV genome into the germ line of mice. Our studies with transgenic mice demonstrate that HFV transgenes encompassing the bel region are transiently transcribed between midgestation and birth at moderate levels in various tissues. Expression is then suppressed, but resumes after a latency of several weeks in a restricted range of tissues and leads to extensive accumulation of HFV transcripts in single cells. This is associated with a progressive degenerative disease of the central nervous system and of striated muscle. These findings provide the first evidence of a disease induced by HFV and suggest that HFV might also act as a human pathogen in neurological diseases. Moreover, the transgenic mouse model will be useful for studying the molecular basis of HFV-induced neurotoxicity, the role of individual disease-associated HFV genes and the regulation of retroviral latency.

Animals↗

Progressive encephalopathy and myopathy in transgenic mice expressing human foamy virus genes.

Transgenic mice carrying the bel region of human foamy retrovirus (HFV) under transcriptional control of its own long terminal repeat expressed the transgene in their central nervous systems and in smooth and striated muscle tissues. The animals developed a progressive degenerative disease of the central nervous system and of the striated muscle. Because expression of the transgene was closely correlated with the appearance of structural damage and inflammatory reactions were scanty, the disease is likely to be caused directly by the HFV proteins. These unexpected findings call for a reevaluation of the pathogenic potential of HFV in humans.

Animals↗

The transcriptional transactivator of human foamy virus maps to the bel 1 genomic region.

The human foamy virus (HFV) genome possesses three open reading frames (bel 1, 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 likely candidate to encode the viral transactivator. Results presented here confirmed this and showed further that a deletion introduced only into the bel 1 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 1 genomic region as a transactivator was further investigated by eukaryotic expression of a genome fragment of HFV spanning the bel 1 open reading frame. A construct expressing bel 1 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.

Animals↗

Transcription factor AP-1 modulates the activity of the human foamy virus long terminal repeat.

The human foamy virus (HFV) contains within the U3 region of its long terminal repeat (LTR) 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 well 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 of the HFV promoter. It is shown that induction of the HFV LTR by 12-O-tetradecanoylphorbol-13-acetate (TPA) and serum factors is mediated through the AP-1 sites.

Animals↗

[Morphological alterations of lymph nodes and thymus during the early course of SIV infection of rhesus monkeys].

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 mantle 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 (about 1 year p.i.). The thymus of the juvenile animals showed first changes 12 and 24 weeks after infection with focal loss 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.

Animals↗

Infectious DNA of the human spumaretrovirus.

An infectious molecular clone (pHSRV) of the human Spumaretrovirus (HSRV) was constructed using viral DNA and cDNA clones. The infectivity of pHSRV was proven by transfection of cell cultures and subsequent infection of susceptible cultures with cell free transfection derived virus. pHSRV derived virus produced foamy virus typical cytopathic effects in susceptible cultures. Infected cells could be stained specifically with foamy virus antisera by means of indirect immunofluorescence. Radioimmunoprecipitation revealed the presence of characteristic HSRV structural proteins in pHSRV infected cultures. By cotransfection of pHSRV and an indicator plasmid it was found that pHSRV is able to transactivate the viral LTR. Viral transcripts were found to be approximately 200 bases longer in pHSRV infected cultures compared to wildtype infected cultures. This difference is most likely due to an insertion of DNA of non-viral origin in the U3 region of the 3'LTR of the infectious clone.

Animals↗

Search for retroviral sequences in peripheral blood mononuclear cells and brain tissue of multiple sclerosis patients.

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-I gag, env and tax genes. Amplified products were separated on agarose 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(5) cellular genomes. None of the specimens was positive for HTLV-I 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.

Adult↗

Transacting transcriptional activation of human spumaretrovirus LTR in infected cells.

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' LTR of HSRV was coupled to the bacterial chloramphenicol acetyltransferase (cat) gene revealed that the level 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 HSRV-directed gene expression occurs at the transcriptional level.

Animals↗

Identification of the major immunogenic structural proteins of human foamy virus.

We have identified the major immunogenic structural proteins of the human foamy virus (HFV), a distinct member of the foamy virus subfamily of Retroviridae. Radiolabelled viral proteins were immunoprecipitated from HFV-infected cells by foamy virus antisera of human and non-human primate origin. Precipitated viral proteins were in the range of 31K to 170K. Labelling of proteins with [14C]glucosamine or with [35S]methionine in the presence of tunicamycin, as well as endo-beta-N-acetylglycosaminidase H and F treatment of [35S]methionine-labelled proteins, revealed three viral glycoproteins of approximately 170K, 130K and 47K, most likely representing the env gene-encoded precursor, the surface glycoprotein and the transmembrane protein of HFV, respectively.

Antigens, Viral↗

Nucleotide sequence analysis of the env gene and its flanking regions of the human spumaretrovirus reveals two novel genes.

Recombinant clones that represent the 3' part of the 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 intergenic 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 profile closely resembles the lentiviral env genes. The spumaretroviral env gene is followed by two open reading frames, termed bel-1 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 classification of the spumaretrovirus subfamily is discussed.

Amino Acid Sequence↗

Molecular cloning of the genome of human spumaretrovirus.

DNA of human spumaretrovirus (HSRV) was cloned from both cDNA and from viral DNA into phage lambda and bacterial plasmid vectors. The recombinant plasmids 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 range in 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.

Cloning, Molecular↗

Nucleotide sequence analysis of a cloned DNA fragment from human cells reveals homology to retrotransposons.

During molecular cloning of proviral DNA of human spumaretrovirus, various recombinant clones were established and analyzed. Blot hybridization revealed that one of the recombinant plasmids had the characteristic features of a member of the long interspersed repetitive sequences family. The DNA element was analyzed by restriction mapping and nucleotide sequencing. It showed a high degree of amino acid sequence homology of 54.3% when compared with the 5'-terminal part of the pol gene product of the murine retrotransposon LIMd. The 3' region of the cloned DNA element encodes proteins with an even higher degree of homology of 67.4% in comparison to the corresponding parts of a member of the primate KpnI sequence family.

Amino Acid Sequence↗

Characterization of a foamy virus isolated from Cercopithecus aethiops lymphoblastoid cells.

A virus derived from cells of a lymphoblastoid line originating from the lymph node of a healthy African green monkey was characterized as a typical member of the foamy virus subgroup of retroviridae by its morphological, physicochemical, biological and biochemical properties (reverse transcriptase activity). Besides the usual host range of foamy viruses, the isolated strain revealed a remarkable T-lymphotropism, distinguishing it from the prototypes of foamy viruses previously isolated from African green monkeys. Two foamy virus infections are demonstrated in human contacts of the African green monkey colony, with the animal harbouring the isolate.

Animals↗