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Biomedical subjects

J Papin

Publications and source records attributed to J Papin.

2 recordsLinked to original sources

Differential regulation of the overlapping Kaposi's sarcoma-associated herpesvirus vGCR (orf74) and LANA (orf73) promoters.

Similar to that of other herpesviruses, Kaposi's sarcoma-associated herpesvirus (KSHV/HHV-8) lytic replication destroys the host cell, while the virus can persist in a latent state in synchrony with the host. During latency only a few genes are transcribed, and the question becomes one of what determines latent versus lytic gene expression. Here we undertake a detailed analysis of the latency-associated nuclear antigen (LANA [orf73]) promoter (LANAp). We characterized a minimal region that is necessary and sufficient to maintain high-level transcription in all tissues tested, including primary endothelial cells and B cells, which are the suspected natural host for KSHV. We show that in transient-transfection assays LANAp mimics the expression pattern observed for the authentic promoter in the context of the KSHV episome. Unlike other KSHV promoters tested thus far, LANAp is not affected by tetradecanoyl phorbol acetate or viral lytic cycle functions. It is, however, subject to control by LANA itself and cellular regulatory factors, such as p53. This is in contrast to the K14/vGCR (orf74) promoter, which overlaps LANAp and directs transcription on the opposite strand. We isolated a minimal cis-regulatory region sufficient for K14/vGCR promoter activity and show that it, too, mimics the regulation observed for the authentic viral promoter. In particular, we demonstrate that its activity is absolutely dependent on the immediate-early transactivator orf50, the KSHV homolog of the Epstein-Barr virus Rta transactivator.

Animals↗

[Complement markers Bf and C4 in multiple sclerosis].

Some immunogenetic HLA markers are significantly correlated with multiple sclerosis, e.g.: the antigens B7, DR2, and the associations B7-DR2, A3-B7-DR2. In addition, the polymorphism of the allotypes Bf and C4 is also controlled by chromosome 6; a study of these markers is therefore of interest. The study of Bf and C4 in multiple sclerosis included a population of genotyped unrelated patients: 50 patients for Bf markers and 41 for C4A and C4B markers. This study revealed an over-representation of allotype S and homozygous BfSS in multiple sclerosis. BfSS homozygote was significantly more frequent in the B7 negative and/or DR2 negative patients, i.e. when the risk markers per se were absent. No correlation could be evidenced with the remittent or progressive character of the disease. These data, obtained from the study of C4, are still preliminary ones. The results found with the Bf markers confirm the existence of a genetic factor in multiple sclerosis and suggest that the susceptibility gene of the disease could be closer to locus Bf than to locus DR.

Chromosomes, Human, 6-12 and X↗