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L Rymo

Publications and source records attributed to L Rymo.

At least 37 records · Page 2Linked to original sources

Domains of the Epstein-Barr virus nuclear antigen 2 (EBNA2) involved in the transactivation of the latent membrane protein 1 and the EBNA Cp promoters.

The Epstein-Barr virus (EBV) nuclear antigen 2 (EBNA2) is one of the first EBV-encoded gene products expressed after infection of primary B lymphocytes. EBNA2 is essential for the growth-transforming potential of the virus and it functions as a transcriptional activator of a set of viral and cellular genes. Sequence-specific DNA-binding by EBNA2 has not been demonstrated but the molecule is targeted to specific DNA regions by a cellular protein, RBP-J kappa, which recognizes the GTGGGAA sequence present in the regulatory region of all EBNA2-responsive promoters defined so far. We have determined the contribution of a RBP-J kappa recognition sequence, an adjacent interferon-stimulated response element (ISRE) motif and a PU.1-binding site in the LMP1 regulatory sequence (LRS) to EBNA2-induced transactivation of the promoter by site-directed mutagenesis of LRS-carrying reporter plasmids. EBNA2 responsiveness was reduced by approximately twofold when either or both of the RBP-J kappa-binding and ISRE sequences were mutated. ISRE seemed to function as an EBNA2-independent positive element. On the other hand, mutation of the PU box resulted in a drastic reduction of EBNA2 responsiveness, irrespective of whether the RBP-J kappa site or the ISRE motif was present. A comparative study by deletion mutation identified regions of EBV B95-8 EBNA2 involved in the transactivation of the LMP1 and the EBNA Cp promoters. Two domains of EBNA2 defined by deletion of amino acids 247-337 and 437-476 were found to be important for the activation of both promoters, while two different domains corresponding to residues 4-18 and 118-198 were required solely for the LMP1 promoter. Thus, EBNA2 must activate the LMP1 and Cp promoters by different mechanisms. All deletions involved in transcriptional activation of the two promoters contained regions that are conserved in EBNA2 of B95-8 EBV (type 1), AG876 EBV (type 2) and herpesvirus papio origin.

Antigens, Viral↗

PU box-binding transcription factors and a POU domain protein cooperate in the Epstein-Barr virus (EBV) nuclear antigen 2-induced transactivation of the EBV latent membrane protein 1 promoter.

Expression of the Epstein-Barr virus (EBV) latent membrane protein (LMP1) is regulated by virus- and host cell-specific factors. The EBV nuclear antigen 2 (EBNA2) has been shown to transactivate a number of viral and cellular gene promoters including the promoter for the LMP1 gene. EBNA2 is targeted to at least some of these promoters by interacting with a cellular DNA binding protein, RBP-J kappa. In the present report we confirm and extend our previous observation that the LMP1 promoter can be activated by EBNA2 in the absence of the RBP-J kappa-binding sequence in the LMP1 promoter regulatory region (LRS). We show that two distinct LRS regions, -106 to +40 and -176 to -136, contribute to EBNA2 responsiveness. Site-directed mutagenesis analysis of the upstream -176/-136 EBNA2 responsive element revealed that two critical cis-acting elements are required for full promoter function. These same elements analysed by electrophoretic mobility shift assays define two binding sites recognized by nuclear factors derived from B cells. An octamer-like sequence (-147 to -139) contained overlapping binding sites for an unidentified transcriptional repressor on the one hand and a factor(s) belonging to the POU domain family but distinct from Oct-1 and Oct-2 on the other. An adjacent purine tract (-171 to -155) held a PU.1 binding site, which was also recognized by a related factor. The results suggest that the POU domain protein and either of two PU box-binding factors bind simultaneously to LRS, creating a ternary complex that might be in part responsible for mediating the transactivation of the LMP1 promoter by EBNA2. There were no qualitative differences between EBV-negative and EBV-positive cells with regard to transcription factor binding to the octamer-like sequence and the PU.1 recognition site, as revealed by electrophoretic mobility shift assays.

Antigens, Viral↗

Regional assignment of the human 4-hydroxyphenylpyruvate dioxygenase gene (HPD) to 12q24-->qter by fluorescence in situ hybridization.

Using a panel of human-rodent somatic cell hybrids, we have previously mapped the gene (HPD, previously called PPD) encoding 4-hydroxyphenylpyruvate dioxygenase to the distal half of the long arm of human chromosome 12, region q14-->qter. To obtain a genomic probe useful for fluorescence in situ hybridization (FISH) analysis we screened a human leukocyte genomic library and isolated a 13.4-kb phage clone, which by restriction fragment and sequence analyses was shown to contain exons 1-10 of HPD and approximately 2-kb upstream sequences. We now report the subregional localization of HPD to 12q24-->qter based on two color FISH analysis employing this clone.

4-Hydroxyphenylpyruvate Dioxygenase↗

Response to cAMP levels of the Epstein-Barr virus EBNA2-inducible LMP1 oncogene and EBNA2 inhibition of a PP1-like activity.

The expression of the Epstein-Barr virus LMP1 oncogene is regulated by viral and non-viral factors in a tissue dependent fashion. The virus encoded transcription factor EBNA2 induces its expression in human B-cells. However, this induction also requires the contribution of cellular and/or other viral factors. In nasopharyngeal carcinoma cells and in cells from Hodgkin's lymphoma, LMP1 gene transcription is independent of viral products. Here we show that the effect of a factor binding to a cAMP responsive-like element (CRE) in the LMP1 gene transcription regulatory sequence (LRS) is essential for efficient promoter activity in the DG75 B-cell line and that elevation of cAMP levels in the cells induces LRS-derived CAT activity in a CRE dependent fashion. Incubation of two EBV-immortalized B-cell lines expressing endogenous EBNA2A with 8-Br cAMP increased the levels of the latency associated 66 kDa LMP1 within 2 h. Interestingly, LMP1 expression in DG75 cells conferred resistance to the inhibitory effect of 8-Br cAMP on cell proliferation. The protein phosphatase 1 and 2A (PP1 and PP2A, respectively) inhibitor okadaic acid also stimulated LRS-CAT activity in DG75 cells. EBNA2A from an EBV-immortalized B-cell line co-immunopurified with a PP1-like protein. An EBNA2A fragment spanning residues 324-436 fused to the GST protein specifically rescued a PP1/PP2A-like component from DG75 cell extracts. This GST-EBNA2A fusion product inhibited a PP1-like activity in nuclear extracts from these cells.

8-Bromo Cyclic Adenosine Monophosphate↗

Expression of plasminogen activator inhibitor-1 mRNA in healthy, atherosclerotic and thrombotic human arteries and veins.

Plasminogen activator inhibitor-1 (PAI-1), specific inhibitor of plasminogen activators (PA), plays an important role in the regulation of fibrinolysis. Increased levels of PAI-1 have been associated with vascular disease such as thrombosis and atherosclerosis. In the present study the expression of PAI-1 mRNA in human healthy, atherosclerotic and thrombotic blood vessel walls was quantified by RNA-RNA hybridization in solution and localized by in situ hybridization. The mean expression of PAI-1 mRNA was significantly higher in healthy arteries (0.86 pg/microgram total RNA) than in healthy veins (0.29 pg/microgram total RNA), p < 0.01. The mean PAI-1 mRNA expression in thrombotic arteries (1.72 pg/micrograms total RNA) was significantly higher than that in healthy arteries, p < 0.05, and the mean PAI-1 mRNA expression in thrombotic veins (1.29 pg/micrograms total RNA) was significantly higher than that in healthy veins, p < 0.01. By in situ hybridization PAI-1 mRNA was detected in the intima, media and adventitia of healthy arteries and healthy veins. In atherosclerotic arteries PAI-1 mRNA was detected in the atherosclerotic plaque and in the medial and adventitial layers below the plaque. An increased expression of PAI-1 mRNA was found in the intimal layer of a thrombotic vein. The increased expression of PAI-1 mRNA in thrombotic arteries and veins indicates a role for PAI-1 in thrombogenesis.

Arteries↗

Development of a recombinant enzyme-linked immunosorbent assay for detection of antibodies against Epstein-Barr virus nuclear antigens 2A and 2B.

The baculovirus expression system was used to produce full-length Epstein-Barr virus nuclear antigens (EBNAs) 2A and 2B. Recombinant baculoviruses that contained the EBNA-2A- and EBNA-2B-encoding sequences were constructed. The proteins were expressed in Spodoptera frugiperda SF-9 cells infected with the recombinant viruses and were characterized by using monoclonal and human polyclonal antibodies by immunoblotting and immunofluorescence techniques. Partially purified extracts of the EBNA-2A- and EBNA-2B-infected insect cells were used to establish a new enzyme-linked immunosorbent assay for the detection of antibodies against EBNA-2A and EBNA-2B. Preferential reactivity toward the type A or type B EBNA-2 protein was observed in 36% of serum specimens from Swiss patients with acute infectious mononucleosis and in 81% of Swiss patients with latent Epstein-Barr virus infection. Of the patients in the latter group, sera from 76% reacted preferentially with EBNA-2A, sera from 5% reacted preferentially with EBNA-2B, sera from 12% showed similar reactivities against both antigens, and sera from 7% were nonreactive.

Acute Disease↗

Human 4-hydroxyphenylpyruvate dioxygenase. Primary structure and chromosomal localization of the gene.

We report the primary structure of 4-hydroxyphenylpyruvate dioxygenase [4-hydroxyphenyl-pyruvate:oxygen oxidoreductase (hydroxylating, decarboxylating)]. The work is based on the isolation of cDNA clones from human liver lambda gt11 libraries. Several overlapping clones covering the coding sequence were characterized. In parallel, peptides from four different digests of the purified protein were analysed for their amino-acid sequence. These peptide sequences covered 86% of the cDNA-derived amino-acid sequence. This gives the sequence for a polypeptide of 392 amino acids with a calculated molecular mass of 44.8 kDa. There is more than 80% identity between the human and the pig enzymes and also between these enzymes and the F antigen from rat and the two allelic forms of this antigen from mouse. The enzyme has 53% conserved amino acids and 27% identical amino acids in common with 4-hydroxyphenylpyruvate dioxygenase from Pseudomonas sp. P.J. 874 and 52% conserved and 28% identical residues, with a protein from Shewanella colwelliana. At the C-terminus there is 61% identity between the seven proteins. These results indicate that these proteins are all 4-hydroxyphenylpyruvate dioxygenases. The identity of the C-terminus makes this part of the molecule a candidate for a functional role in the catalytic process. At conserved positions in all seven enzymes, there are two tyrosine residues and three histidine residues, i.e. amino acids which have been implicated as ligands for iron in 2-oxoacid-dependent dioxygenases. The gene encoding the enzyme was localized to chromosome 12q14-->qter by Southern-blot analysis of human-rodent somatic-cell hybrids.

4-Hydroxyphenylpyruvate Dioxygenase↗

Viral and cellular factors influence the activity of the Epstein-Barr virus BCR2 and BWR1 promoters in cells of different phenotype.

Transformation of B-lymphocytes by Epstein-Barr virus (EBV) is characterized by the expression of six viral nuclear antigens (EBNA1 to EBNA6) which are encoded by messages derived from long primary transcripts initiated at one of two promoters located in the BamHI C (BCR2) and BamHI W (BWR1) regions of the viral genome. The BWR1 promoter is preferentially utilized during the initial phases of EBV infection, whereas the BCR2 promoter is almost invariably used in transformed lymphoblastoid cell lines (LCLs). In order to gain some insight into the molecular mechanisms underlying promoter usage we have analyzed the activity of reporter plasmids carrying different parts of the BWR1 and BCR2 regulatory sequences in EBV-negative and EBV-carrying B cell lines that, on the basis of their surface marker expression, are representative of different stages of B cell activation/differentiation. We show that: (i) there is an inverse correlation between the activity of BWR1 and oriP-containing BCR2 reporter plasmids in cell lines expressing a BL group I versus a group III phenotype, the BWR1 promoter being virtually inactive in group III cells; (ii) BCR2 reporter plasmids devoid of the oriP region are active in EBV-negative cell lines and EBV-positive cells expressing a group I or group II phenotype and virtually inactive in BL group III cells and LCLs, suggesting that cellular factors are required for activation of BCR2 promoter elements. These factors are lost upon progression to a group III phenotype); (iii) expression of EBNA2 is sufficient to activate reporter plasmids containing the proximal part of the BCR2 promoter in EBV negative cells, whereas coexpression of EBNA2 and EBNA1 is required to activate the promoter in oriP-containing plasmids; (iv) the 30-bp repeat region of oriP acts as a negative cis-element on downstream promoters but is transformed into a transcriptional enhancer by the concerted action of EBNA1 and cellular factors. There was a poor correlation between the activity of exogenous reporter plasmids and endogenous BWR1 and BCR2 promoters in phenotypically different EBV-positive cell lines. The presence of the appropriate trans-acting factors was not sufficient to activate the endogenous BWR1 and BCR2 promoters in BL cells expressing a group I phenotype.

Antigens, Viral↗

Cell phenotype-dependent control of Epstein-Barr virus latent membrane protein 1 gene regulatory sequences.

Growth transformation-associated Epstein-Barr virus-encoded genes are differentially regulated depending on the host cell phenotype. We have previously identified an LMP1 regulatory region (LRS) 5' of the LMP1 gene (+40 to -634) and analyzed its role in transcription initiation in the EBV-negative Burkitt's lymphoma line DG 75 (Fåhraeus et al., 1990a). In order to investigate the cell phenotype dependence of LMP1 gene regulation we have now compared the activity of positive and negative cis-acting LRS elements in cell lines of B lymphoid and epithelial cell origin in the presence and absence of the virus-encoded nuclear antigen EBNA2. Our results show that reporter plasmids that contain only the -54/+40 region of LRS are active in all tested cell lines. Furthermore, the previously identified negative cis-elements in the -144/-54 region were found to suppress promoter activity independent of the cell phenotype. EBNA2 was able to override the effect of the negative elements in all lines of B-cell origin, whereas it had no effect in epithelial lines. The positive effect of EBNA2 was mediated by cis-acting elements in the -214/-144-bp region. In all six tested cell lines of epithelial origin, reporter plasmids that carried the full-length LRS were active, independent of EBNA2. The LMP1 promoter in these constructs was activated by the concerted action of EBNA2-independent, positive elements in the -214/-144 and -324/-214 positions that counteracted the effect of the negative LRS elements.

Animals↗

Disease-related differences in antibody patterns against EBV-encoded nuclear antigens EBNA 1, EBNA 2 and EBNA 6.

Antibodies to Epstein-Barr virus (EBV) nuclear antigen family (EBNA) and three of its individual members, EBNA 1, EBNA 2 (A and B) and EBNA 6, were measured by anticomplement immunofluorescence (ACIF) in sera of 75 healthy controls, 13 patients with chronic EBV infection, 38 with non-Hodgkin lymphoma (NHL), 23 with Hodgkin's disease (HD), 105 with nasopharyngeal carcinoma (NPC) and 7 patients with infectious mononucleosis (IM). Their anti-EBV lytic antigens were also measured. We observed that: (1) anti-EBNA 2A and E6 rose in parallel 4-6 weeks after IM, followed by anti-EBNA 1 at 3-6 months, (2) all seropositive individuals had anti-EBNA 1; 74% also had anti-EBNA 2A and E6, (3) anti-EBNA 1 accounted for most of the anti-EBNA reactivity in non-IM sera. Striking disease-associated differences were noted on the humoral responses to the lytic and transformation-associated antigens. Compared to the controls, anti-EBNA 1, -EBNA 2A and -EBNA 6 were simultaneously four to 10 times higher in chronic reactivations, whereas only anti-EBNA 1 was elevated (10 times) in NPC. Individual EBNA titres were normal in NHL or HD patients.

Antibodies, Neoplasm↗

High frequency of mammary adenocarcinomas in metallothionein promoter-human growth hormone transgenic mice created from two different strains of mice.

Transgenic mice were developed by injecting a mouse metallothionein promoter-human growth hormone (Mt-hGH) gene fragment into the pronucleus of C57Bl x DBA/2J-f2 or C57Bl x CBA-f2 one cell embryos. Six founder animals with the C57Bl x DBA genetic background grew 1.3-2.2 times larger than littermate controls and had higher levels of hGH in plasma (4.6-279 mU/l). Three of the four female transgenic founders developed malignant papillar adenocarcinomas of mammary origin at 27-43 weeks of age. One male transgenic founder was successfully mated and two of three female transgenic offsprings developed mammary tumors. To examine if the tumor induction was dependent on the strain of mice used the experiments were repeated using animals with different genetic background. Fourteen female hGH transgenic mice from five founder animals were generated using C57Bl x CBA-f2 mice. Thirteen of the animals had elevated levels of hGH in plasma (7-1960 mU/l) and grew larger than control animals. Nine of the animals developed mammary adenocarcinomas. Four of the hGH expressing animals did not demonstrate macroscopic tumor formation but have not yet been analyzed histologically. The present study suggests that markedly elevated endogenous levels of GH cause mammary carcinoma in hGH transgenic mice. The present animal model might prove useful for studying molecular mechanisms involved in the development of hormonally induced mammary tumors.

Adenocarcinoma, Papillary↗

Methylation of discrete sites within the enhancer region regulates the activity of the Epstein-Barr virus BamHI W promoter in Burkitt lymphoma lines.

Eight of the nine viral antigens known to be expressed in in vitro Epstein-Barr virus (EBV)-transformed B-lymphoblastoid cell lines are downregulated in EBV-carrying Burkitt lymphomas (BL). Only EBNA1 can be detected in BL biopsies and BL-derived cell lines that maintain the representative phenotype during culture in vitro (group I BL lines). This restricted pattern of viral gene expression is accompanied by extensive EBV DNA methylation and can be reversed by treatment with the demethylating agent 5-azacytidine. Transcription of the genes encoding the six transformation-associated EBNAs can be initiated from one of two promoters located in the BamHI C and W regions, respectively, of the virus genome. We show that discrete sites within the BamHI W enhancer region are methylated in the group I BL lines Rael, Cheptage, and Elijah and become unmethylated after 5-azacytidine treatment that induces the expression of EBNA2. Demethylation correlates with activation of transcription from the BamHI W promoter as determined by S1 protection analysis. Reporter plasmids in which the W enhancer sequences were linked to the chloramphenicol acetyltransferase gene were active in untreated Rael, Cheptage, and Elijah cells, demonstrating that all of the required transcription factors are present in group I BL cells. Conversely, in vitro methylation of the enhancer sequences abolished their activity. The results suggest that methylation of control regions in the EBV genome may play a critical role for the regulation of viral gene expression in tumor cells.

Antigens, Viral↗

Immunizations of monkeys with synthetic peptides disclose conserved areas on gp120 of human immunodeficiency virus type 1 associated with cross-neutralizing antibodies and T-cell recognition.

Site-directed immunization was employed to identify sites on the envelope glycoprotein gp120 for antibody-mediated neutralization of human immunodeficiency virus type 1 (HIV-1). Antisera were raised in monkeys (Macaca fascicularis) against a series of 40 overlapping synthetic peptides covering the entire amino acid sequence of gp120 from the HTLV-IIIB strain of HIV-1. Immune sera against 12 of these peptides were reactive with gp120 by immunoblotting analysis, and antisera raised against 5 peptides, corresponding to amino acids (aa) 152-176, 193-218, 206-230, 248-269, and 307-330, were highly efficient in neutralizing HIV-1 (HTLV-IIIB) infectivity in vitro. Admixture of individual neutralizing anti-peptide monkey sera resulted in increment in neutralizing antibody titer. Antisera with reactivity to the relatively conserved regions defined by aa 152-176, 193-230, and 248-269 also neutralized to different extents the infectivity of the five Swedish clinical isolates of HIV-1 tested. Only a few HIV-1-infected people were found to make antibodies to these three conserved domains of gp120 as judged by ELISA using synthetic peptides as antigens. Three of the peptides (aa 152-176, 248-269, and 307-330) that induced neutralization antibodies also induced interleukin 2 production and lymphocyte proliferation when added to cultures of peripheral blood mononuclear cells from monkeys immunized with the corresponding peptides, indicating that these domains accommodate T-cell recognition sites. The results have obvious implications for the rational design of subunit vaccines against HIV-1 infection.

Acquired Immunodeficiency Syndrome↗

Induction of mammary adenocarcinomas in metallothionein promoter-human growth hormone transgenic mice.

To develop transgenic mice, a mouse metallothionein promoter-human growth hormone (Mt-hGH) gene fragment was injected into the pronucleus of C57BI x DBA/2J F2 one-cell embryos. Six founder animals grew larger (1.3-2.2 times) than littermate controls and had higher levels of hGH in plasma (4.6-279 mU/l). At 27-43 weeks of age, 3 of the 4 female transgenic founders developed malignant papillary adenocarcinomas of mammary origin. One of the male transgenic founders was successfully mated and 2 of 3 female transgenic offspring developed mammary tumors. Forty-two female mice with the same genetic background as the transgenic animals and older than 43 weeks served as controls. No palpable tumor was found in this group. Five of the control animals were killed and examined histologically, revealing only normal mammary tissue. Earlier studies have shown that GH is important for growth and development of the mammary gland. Our study suggests that markedly elevated endogenous levels of GH cause mammary carcinoma in a specific strain of transgenic mice. The present animal model might be useful for studying molecular mechanisms that are involved in the development of hormonally induced mammary tumors.

Adenocarcinoma↗

Identification of type-specific linear epitopes in the glycoproteins gp46 and gp21 of human T-cell leukemia viruses type I and type II using synthetic peptides.

Synthetic peptides of 20-25 amino acids were employed in enzyme-linked immunosorbent assays to identify linear epitopes in the external glycoprotein gp46 and the transmembrane glycoprotein gp21 of human T-cell leukemia/lymphotropic viruses type I (HTLV-I) and II (HTLV-II). Ten linear epitopes were identified in the HTLV-I glycoproteins, seven in gp46 and three in gp21. Three major linear epitopes were identified in the gp46 of HTLV-II. Peptides representing linear epitopes of gp46 were found to be sensitive and specific for the detection of antibody and permit serological identification and differentiation of HTLV-I and HTLV-II infections.

Amino Acid Sequence↗

Epstein-Barr virus shedding in breast milk.

One hundred healthy women already donating to the Children's Hospital Breast Milk bank consented to provide a sample of breast milk for this study. Using a DNA-DNA hybridization dot-blot assay Epstein-Barr virus (EBV) genome (Bam HIW region) was detected in cells shed into breast milk of 46 out of 100 women studied and in 60 out of 132 (46%) of samples donated overall. The prevalence of EBV shedding increased postnatally to a peak of 74% (26/35 positive samples) between 3 and 12 weeks postdelivery. Women delivering prematurely had an initially lower prevalence of shedding with only six out of 30 (20%) positive samples in the first week after delivery, compared to 16 out of 35 (46%) for women delivering at term. Of the 18 women donating more than one sample, 13 showed consistently positive (n = 8) or negative (n = 5) results, and the remaining five had intermittent shedding detected. Only seven out of 42 (17%) breast milk samples studied were EBV-IgG antibody positive, and none showed IgM or IgA-EBV antibodies. Further studies and prospective followup of infants are needed to confirm that breast milk is a significant source for early EBV infection of infants, as indicated by serologic studies.

Antibodies, Viral↗

Variable expression of latent membrane protein in nasopharyngeal carcinoma can be related to methylation status of the Epstein-Barr virus BNLF-1 5'-flanking region.

Seven virus-coded proteins, the nuclear proteins EBNA-1 to EBNA-6 and the latent membrane protein (LMP), are regularly expressed in Epstein-Barr virus (EBV)-transformed lymphoblastoid cell lines. In nasopharyngeal carcinoma (NPC), only EBNA-1 is regularly expressed; LMP is detected in about 65% of the tumors. In Burkitt's lymphoma tumors only EBNA-1 is expressed. We have recently shown that the methylation patterns of the EBV genome varied between these cell types. In virally transformed lymphoblastoid cell lines of normal origin, the EBV DNA is completely unmethylated. In contrast, in the Burkitt's lymphoma-derived cell line Rael and in a nude mouse-passaged NPC tumor, C15, there was an extensive methylation of CpG pairs. The methylation extended into the coding regions of the two expressed genes, EBNA-1 (in both tumor types) and LMP (in C15). Two presumptive control regions were exempted from this overall methylation: the oriP that contains both an origin of DNA replication and an EBNA-1-dependent enhancer and the 5'-flanking region of the BNLF-1 open reading frame that codes for LMP. The latter was only exempted in the LMP expressing NPC. We have now investigated the relation between expression of LMP and methylation of DNA in the 5'-flanking 1 kb region of BNLF-1, coding for LMP. LMP was methylated in 3 of 12 NPC biopsies that did not express LMP but was partially or totally unmethylated in the remaining 9 that expressed the protein. The three BNLF-1 exons were highly methylated in all the tumors. The oriP region was unmethylated in all the tumors, as in the previously studied Rael cell line and nude mouse-passaged NPC. Also, the BamHI W enhancer region involved in the expression of EBNA nuclear proteins was methylated. None of the biopsies expressed EBNA-2. Our data show that the EBV genomes are highly methylated in NPC tumors. The strong reverse correlation between the methylation of the putative control region of the LMP gene and the expression of LMP suggests that methylation has a role in the regulation of this gene.

Antigens, Viral↗

Continuous epitopes of the human immunodeficiency virus type 1 (HIV-1) transmembrane glycoprotein and reactivity of human sera to synthetic peptides representing various HIV-1 isolates.

Immunoreactive regions of human immunodeficiency virus type 1 (HIV-1) gp41 were mapped by reacting HIV-1 antibody-positive human sera with overlapping synthetic peptides which covered the transmembrane protein. Three immunoreactive domains were identified, and five different and partially overlapping epitopes recognized by HIV-1-positive human sera were found within one immunodominant region. The effect on antibody recognition after single amino acid substitutions within one defined epitope was also studied. The reactivity of various HIV-1-positive sera to synthetic peptides with amino acid substitutions representing known isolates suggests an important substitution in the major epitope of African HIV-1 strains.

Amino Acid Sequence↗