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L M Poulsen

Publications and source records attributed to L M Poulsen.

5 recordsLinked to original sources

Identification of cytotoxic T cell epitopes within Epstein-Barr virus (EBV) oncogene latent membrane protein 1 (LMP1): evidence for HLA A2 supertype-restricted immune recognition of EBV-infected cells by LMP1-specific cytotoxic T lymphocytes.

Epstein-Barr virus (EBV) nuclear antigen 1 (EBNA1) and latent membrane proteins (LMP) are the only antigens consistently expressed in malignancies such as nasopharyngeal carcinoma (NPC) and Hodgkin's disease (HD). Since EBNA1 is not recognized by EBV-specific cytotoxic T lymphocytes (CTL), there is increasing interest in the identification of the potential target epitopes within LMP1. Although LMP1-specific CTL have been isolated from seropositive individuals, earlier attempts to identify the peptide epitopes recognized by these T cells have been unsuccessful. In the present report we used a novel protocol to identify CTL epitopes within LMP1 which can be recognized by both polyclonal and clonal CTL. Firstly, a computer-based program was employed to identify the potential HLA-binding peptides within LMP1. Polyclonal CD8+ CTL were then isolated from seropositive donors that recognized the peptide epitopes YLLEMLWRL and YLQQNWWTL from LMP1 in association with HLA A2. Limiting dilution analysis of the memory CTL response revealed that the LMP1-specific CTL response constitutes a minor component of the CTL response in healthy virus carriers. Interestingly, analysis of YLLEMLWRL-specific CTL revealed that these CTL were able to lyse EBV-infected B cells expressing different HLA A2 supertype alleles including A*0201, A*0202, A*0203, A*0204, A*0206, A*6802 and A*6901. These data strongly support the notion that HLA class I supertype-restricted CTL may be of significant use in the development of peptide-based immunotherapeutics against EBV-associated malignancies in different ethnic populations.

Alleles↗

Class I processing-defective Burkitt's lymphoma cells are recognized efficiently by CD4+ EBV-specific CTLs.

In the present study, we have isolated CD4+ CTLs that recognize an epitope from EBV nuclear Ag 2 in association with two different HLA-DQ Ags, DQA1*0501/DQB1*0201 (DQ2) or DQA1*0501/DQB1*0301 (DQ7). Both the HLA-DQ2 and HLA-DQ7 alleles displayed a similar efficiency in the endogenous and exogenous presentation of this epitope. Since earlier studies have shown that the EBV-associated malignancy, Burkitt's lymphoma (BL), escapes class I-restricted immune recognition by down-regulating the expression of peptide transporter genes, we have explored the possibility that these tumor cells can process class II-restricted CTL epitopes. The data presented in this study clearly demonstrate that BL cells were recognized efficiently by CD4+, MHC class II-restricted EBV-specific CTLs following infection with recombinant vaccinia encoding EBV nuclear Ag 2. Analysis of surface MHC class II expression on BL cells revealed high levels of HLA-DR and HLA-DQ molecules, and most of these molecules were negative for the invariant chain peptide, referred to as CLIP. Moreover, these tumor cells also showed normal levels of HLA-DMB gene expression, which has been shown previously to be an essential component of the class II processing pathway. The present finding of efficient processing function through the class II pathway in BL cells provides a novel mechanism for immune targeting of EBV-positive malignancies.

Amino Acid Sequence↗

Cytotoxic T-lymphocyte clones specific for an immunodominant epitope display discerning antagonistic response to naturally occurring Epstein-Barr virus variants.

In the present study we have identified Epstein-Barr virus isolates which encode variant sequences within an HLA B35-restricted immunodominant cytotoxic T-lymphocyte (CTL) epitope that act as natural antagonists and can inhibit CTL activity on the wild-type epitope. This effect can be demonstrated if the wild-type epitope is presented as a synthetic peptide or when processed from a full-length Epstein-Barr virus protein expressed by recombinant vaccinia constructs. However, this antagonistic effect was only selectively seen with some CTL clones, while a strong agonistic effect was evident for other clones in the presence of the same variant peptide. The data presented in this study strongly suggest that it is unlikely that the variant viruses can completely antagonize a virus-specific CTL response by this mechanism since the host immune response is capable of generating CTLs expressing a diverse array of T-cell receptors. Moreover, many of these CTLs can recognize the variant sequences as efficiently as wild-type epitope.

Antigens, Viral↗

Unusually high frequency of Epstein-Barr virus genetic variants in Papua New Guinea that can escape cytotoxic T-cell recognition: implications for virus evolution.

Cytotoxic T lymphocytes (CTLs) which recognize viral antigens in association with human leukocyte antigens (HLAs) play an important role in controlling persistent virus infections. These viruses use several mechanisms to evade the immune response, including mutations that affect either T-cell receptor recognition or binding of viral epitopes to the HLA. It has recently been proposed that the distribution of HLA frequencies and the specific CTL response may influence the long-term evolution of Epstein-Barr virus (EBV) by selecting variants which lack immunodominant CTL epitopes. To test this hypothesis, we have studied EBV isolates from two genetically distinct Papua New Guinea (PNG) populations, residing in coastal and highland regions, for polymorphism within seven viral CTL epitope sequences restricted through several class I HLAs. Surprisingly, all EBV isolates analyzed displayed identical amino acid substitutions within HLA A11-, B35- and B8-restricted CTL epitope sequences which completely abrogated CTL recognition and binding of synthetic peptides to HLA molecules. Furthermore, these substitutions revealed no correlation with the contemporary distribution of HLAs in the different PNG populations, which argues for a minimal influence of immune pressure. The sequence homology between EBV isolates from coastal and highland PNG suggests that the virus may have had a single origin and, more importantly, that these isolates are genetically distinct from those present in a Caucasian population.

Amino Acid Sequence↗