The latent membrane proteins LMP1 and LMP2A are co-expressed in most malignancies associated with Epstein-Barr virus (EBV).In contrast with the transforming LMP1 oncoprotein, LMP2A is expressed in lymphocytes of healthy EBV carriers and considered to maintain viral latency.Critical for these LMP2A functions are a transmembranous epitope recognized by specific cytotoxic T lymphocytes (CTLs) and the N-terminal immunoreceptor tyrosine-based activation motif (ITAM), blocking B-cell receptor signaling.To characterize ITAM and CTL motifs of LMP2A and to correlate them with C-terminal variants of LMP1 including the 30-bp deletion variant (LMP1⌬), comparative sequence analysis was performed on 76 samples from patients with reactive and malignant lympho-proliferation (infectious mononucleosis, n ؍ 21; tonsillar hyperplasia, n ؍ 16, chronic lymphoproliferation, n ؍ 9; Hodgkin's disease, n ؍ 8; Non-Hodgkin's lymphoma, n ؍ 5; AIDS-related large-cell lymphoma, n ؍ 17).The CTL motif was conserved in all but 2 cases (C 426 =S).The ITAM motif was characterized by strictly conserved YXXL sequences in all cases, with a sequence polymorphism in between.The B95.8 prototype was found in 17% (13/76) of cases, while in 72% a variant with 3 point mutations (166796 C=A, 166805 C=A, 166810 C=T) was detected; 11% had 1 or 2 of these mutations in addition to G=A at 166793.In the C terminus of LMP1, a hypervariable region including LMP1⌬ was described in 61% of cases.There was no significant association of a particular LMP2A variant with either malignant phenotype or LMP1⌬, demonstrating that the functional domains of LMP2A are conserved and that the sequence polymorphisms in LMP1 and LMP2A are independent.
The expression of the Epstein-Barr virus (EBV) latent membrane protein 1 (LMP1) oncogene is tightly regulated by viral and cellular factors. LMP1 is present in the majority of nasopharyngeal carcinoma tumor cells and in Reed-Sternberg cells from Hodgkin's lymphoma, in which the only EBV nuclear antigen detected is EBNA1. The aim of this study was to test whether mutations affecting LMP1 gene expression were present in lymphoproliferative disorders, and, if so, whether their presence correlated with the clinical course of the disease. For this purpose we characterized the LMP1 promoter region from seven cases including two patients with aggressive Hodgkin's disease and two with atypical lymphoproliferative syndromes. Our results show that the sequences -298 to +29 relative to the transcription start site diverged up to 9.3% when compared with the prototype EBV strain B95-8. The cAMP responsive-like element (CRE), located at positions -37 to -44, was found to be mutated in 3 of the 7 cases. Functional analysis of transfected human embryonic kidney 293 cells using the firefly luciferase reporter gene revealed that mutations within the CRE site led to a 70% mean decrease in reporter activity. Our analysis indicates that in lymphoproliferative disorders, naturally occurring LMP1 variants that exhibit weak promoter activity are still associated with clinically progressive disease.
This sequencing study of 17 acquired immunodeficiency syndrome-related lymphomas (9 primary brain, 8 systemic) and 8 human immunodeficiency virus-negative atypical lymphoproliferations expressing large amounts of the latent membrane protein 1 (LMP1) of Epstein-Barr virus was performed to characterize the carboxy terminal NF-kappa B activation domain of LMP1 at the molecular level in an immunocompromised host. In- frame deletions within the NF-kappa B activation domain were identified in all but 2 primary brain lymphomas, 4 systemic lymphomas, and 4 atypical lymphoproliferations, ie, in 60% of cases. In addition, non silent point mutations (range 1 to 5, mean 3.3) were detected in all cases. Although all changes occurred within the first 100 nucleotides of the carboxy terminal NF-kappa B activation domain--a critical sequence for the protein half-life--not a single point mutation was found in the remaining 62 nucleotides, necessary for malignant transformation. Such a clustering of nonrandom sequence variations, associated with a high oncoprotein expression in immunocompromised hosts, suggests that this part of the LMP1 oncogene behaves as a hypervariable region with natural selection of growth-promoting variants through prolongation of the protein half-life.
The latent membrane protein 1 (LMP1) oncogene is one of the major proteins synthesized by the Epstein-Barr virus (EBV) and is expressed in Reed-Sternberg (RS) cells of EBV-associated Hodgkin's disease (HD). We have studied the effect of this oncoprotein on the formation of RS cells in the EBV-negative HD cell lines L-428 and KM-H2 as well as on the formation of multinucleated cells in the mononuclear human embryonic kidney cell line 293. LMP1 prototype (B95-8) and its naturally occurring carboxy terminal 30 base pair deletion variant LMP1-del were transfected into the cell lines and cytocentrifuge preparations were analysed after 24, 48, 72, 144, 216, and 240 h. While no oncoprotein expression was seen in the KM-H2 cell lines, expression of LMP1 and LMP1-del was observed in the L-428 and 293 cell lines. In the HD cell line L-428 oncoprotein expression was infrequent but when observed was very strong and preferentially associated with multinucleated RS cell morphology (71% of LMP1 positive cells). This is in contrast with the untransfected or transfected but not expressing cells where intermediate mononuclear elements predominated over multinucleated RS cells (< 3%). Frequent oncoprotein expression was observed in the 293 cells and again was associated with multinuclearity. These LMP1 expressing 293 giant cells showed strong expression of ICAM-1(CD54), not detectable in the untransfected cells. In the LMP1-del transfectants giant cells with more than four nuclei were frequently observed. However, giant cells were much less frequent in 293 cells transfected with the amino terminal deletion variant of LMP1 or the lytic form of LMP1, known to induce low NF-kappa B activation compared to the LMP1 prototype. Therefore, LMP1 mediated NF-kappa B activation appears to be involved in polycaria formation. The strong association of LMP1 expression with multinuclearity in a genetically unstable condition -the L-428 and 293 cells show multiple chromosomal abnormalities-suggests that this oncoprotein including its naturally occurring carboxy terminal deletion variant promote the formation of multinuclear cells, in particular of RS cells in EBV-associated HD.
Summary. We describe an immunocompetent 12‐year‐old boy with chronic EBV infection and lymphoid interstitial pneumonitis. Lymph node biopsies showed effacement of the architecture with polymorphic cellular infiltrates, consisting predominantly of T cells and natural killer cells. No clonal rearrangement of TCR or immunoglobulin genes was seen. DNA was extracted from hilar lymph nodes; sequencing of the carboxy terminal region of the latent membrane protein 1 (LMP‐1) oncogene revealed a 69 base‐pair deletion and four point mutations. Immunosuppressive treatment with prednisone and cyclosporine reversed the lymphadenopathy.
to further characterize genes that are predominantly expressed in RS cells. Three single RS cells from a nodular-sclerosing and mixed cellularity HD were used as a source for the driver cDNA. No Tor B-cell specific transcripts but those for CD30, TNF[3, and IL2 receptor were present. The biotinylated tracers for subtractive hybridization were from single T and B cells of the same HD node, and from peripheral blood leukocytes. So far, 11 subtraction libraries have been screened. Sequence information of the 3' untraslated region was obtained from 59 clones which were considered tracer-specific since they did not hybridize with driver cDNA. Six different clones, previously hybridized to a variety of HD-derived and other hematopoietic cell line cDNAs, were used to recover full-length cDNA clones from the HD cell line KMH2-derived library. The molecular genetical characteristic of these SR cell-derived clones, their specificity and expression profiles in hematopoietic cell lineages will be presented.
The latent membrane protein 1 (LMP1) oncogene is one of the major proteins synthesized by the Epstein-Barr virus (EBV). It is expressed in Reed-Sternberg cells of Hodgkin's disease (HD), tumor cells of nasopharyngeal carcinoma (NPC), and immunoblasts of angioimmunoblastic lymphadenopathy (AILD). A particular LMP1 deletion mutant was recently identified in NPC and clinically and histologically aggressive HD. We studied two patients with AILD that subsequently progressed into immunoblastic lymphoma (IBL) in order to investigate whether this LMP1 deletion mutant was implicated in progression of AILD into IBL. Immunohistology and in situ hybridization were performed on diagnostic biopsies. DNA extracted from fresh frozen material was used for rearrangement studies and polymerase chain reaction (PCR) based amplification and sequencing of portions of the LMP1 gene. Immunohistochemistry revealed B cell origin of both cases of IBL. In the first patient clonal rearrangement of the immunoglobulin heavy-chain gene was present in IBL but not in AILD. In this patient, scattered immunoblasts of AILD and numerous tumor cells of B-IBL were shown to contain EBV transcripts (EBER1) and to express LMP1. Sequence analysis of the LMP1 gene from AILD and IBL in the first, and from IBL in the second patient, revealed identical deletions and point mutations. This LMP1 deletion mutant is identical to those which have been reported in HD and NPC. Its association with evolution of AILD into B-IBL, aggressive HD and NPC, suggests that this particular mutant is more widespread than originally thought and is clinically relevant.
Two recently discovered genes, the recombination activating genes 1 and 2 (RAG-1 and RAG-2), are necessary to perform variable (V), diversity (D), and joining (J) recombination. They synergistically activate VDJ recombination to generate immunocompetent lymphocytes. Disruption of either gene results in a maturation arrest at a very early B and T cell progenitor stage. Expression and downregulation of RAG's are closely associated with interleukin 7, sIgM and TCR-CD3 complex, respectively. Assessment of RAG mRNA expression is a valuable marker in identifying the genotypic maturation status of leukemias and lymphomas. Persistent RAG expression in otherwise mature lymphoid proliferations may explain puzzling biological and clinical observations such as multiple rearrangements in lymphomas with a mature phenotype. Lack of RAG expression in Hodgkin's disease with abundant Reed-Sternberg cells is consistent with a mature phenotype of the latter. Availability of a anti-RAG-1 monoclonal antibody in the near future will facilitate RAG analysis of lymphomas.
Twelve cases of relapsing Hodgkin's disease were investigated for the presence of Epstein-Barr virus (EBV). Of these, 7 cases contained EBV gene products (LMP1, EBER RNA) in the diagnostic Reed-Sternberg cells and variants at first presentation and at relapse(s), whereas 5 cases were negative at both first diagnosis and relapse. Among the 7 EBV- positive cases, material for DNA extraction was available in 2 cases at both diagnosis and relapse(s). Ig and T-cell receptor gene rearrangements displayed a germline configuration in the 2 cases. However, Southern blot analysis of the terminal repeats (TR) of EBV genome showed that, in 1 of the 2 cases, the fragment was of the same size at diagnosis and in the subsequent two relapses (1 early and 1 late). The second case contained monoclonal EBV genome at diagnosis, but the Southern analysis of the TR was negative at relapse. The latent membrane protein (LMP1) sequence analysis confirmed the persistence of a distinctive viral strain in each of the 2 cases with individual abnormalities within the carboxy terminal region (5 point mutations and a 30-bp deletion for the first case and 6 point mutations for the second case). The persistence of a given strain in early and late relapses is evidence towards the view that in Hodgkin's disease such relapses are related to a single residual tumor cell clone.
We have recently identified in Epstein-Barr virus (EBV) positive Hodgkin's disease (HD) a variant of the latent membrane protein 1 (LMP1) oncogene characterized by four point mutations and a 30 base pair deletion. These findings led us to test whether such mutants were also present in other lymphoproliferative disorders (LPD). We analysed 98 EBV DNA positive cases (67 LPD, 15 benign conditions, 16 lymphoblastoid cell lines) by PCR for deletions within the LMP1 gene. DNA sequencing of the region coding for the carboxy terminal protein domain was performed on 24 cases. In 13 cases the same combination of 4 point mutations at positions 168 320, 168 308, 168 295 and 168 225 was identified. Of these cases, 12 had an additional point mutation at position 168 357 and eight at position 168 355, and nine had a 30 base pair deletion including nucleotides 168 285 to 168 256. These deletion mutants were identified in HD, angioimmunoblastic lymphadenopathy, B-immunoblastic lymphoma, peripheral T-cell lymphoma, and two lymphoblastoid cell lines. Our findings reveal a high frequency of non-random point mutations at preferential sites within the 3' (carboxy terminal) region of the LMP1 oncogene. The association of these mutational hot spots with LPD suggests that they are involved in EBV related lymphomagenesis and that they define a clinically relevant EBV strain.
The latent membrane protein (LMP) oncogene of the Epstein-Barr virus (EBV) is 1300 base pairs (bp) long and expressed in Hodgkin and Reed-Sternberg (HRS) cells of about 50% of Hodgkin's lymphomas and in tumor cells of about 60% of nasopharyngeal carcinomas (NPC). The LMP sequences of EBV variants isolated from two NPC (NPC 1510 and NPC CAO) have recently been published. Compared to the standard EBV sequence (EBV B95-8) they both show deletions of 30 bp near the 3' end. These mutations render the LMP oncogene more aggressive in NPC. In 52 Hodgkin's lymphomas expressing the LMP oncogene was amplified the coding sequence by the polymerase chain reaction. In five tumors deletions within the coding region for the intracytoplasmic LMP domain have been found. DNA sequencing revealed three 30 bp deletions almost identical to those observed in NPC 1510 and NPC CAO. In a forth case, a 70 bp deletion encompassing the regions of the 30 bp deletions was found. Histologically, all five tumors with such deletions showed abundant HRS cells. It is likely that these mutations of the LMP oncogene in a similar way as in NPC also favour the proliferation of HRS cells in Hodgkin's disease.
Epstein-Barr virus (EBV) is detectable in approximately 40% of cases of Hodgkin's disease (HD). The viral genomes remain latent but positive staining with anti-ZEBRA antibody in a small fraction of Reed-Sternberg (RS) cells of some cases of HD would suggest possible activation of EBV replication within these cells. We report the investigation of 40 cases of EBV-associated HD (including 5 human immunodeficiency virus [HIV]- positive cases) using anti-ZEBRA antibodies. Positive staining was found in only three (HIV-negative) cases. One of these three cases showed approximately 1% of ZEBRA-positive tumor cells, whereas the other two cases showed rare positive cells. In the case with 1% ZEBRA- positive cells, a strong signal was obtained with anti-EA-R antibody and BHLF1 oligoprobes, which indicated early gene expression. EBV replication could be shown in this case by nonisotopic in situ DNA-DNA hybridization, which showed markedly increased numbers of EBV genomes in a few RS cells. Viral replication was confirmed using reverse transcriptase and polymerase chain reaction that detected transcripts from the BLLF1 gene encoding for the membrane antigen gp350/220. EBV replication in RS cells seems to be an exceptional event but may provide clues to mechanisms of control of viral latency and assume clinical implications in the future.