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Human Monoclonal Antibody Directed Against an Envelope Glycoprotein of Human T-cell Leukemia Virus Type I

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Specialty Science
Date 1986 Apr 1
PMID 2422659
Citations 15
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Abstract

We report the production and characterization of a human monoclonal antibody reactive against the major envelope glycoprotein of human T-cell leukemia virus type I (HTLV-I), a virus linked to the etiology of adult T-cell leukemia. We exposed lymph-node cells derived from a patient with adult T-cell leukemia to the Epstein-Barr virus in vitro and obtained a B-cell clone (designated 0.5 alpha) by a limiting dilution technique. The secreted product of 0.5 alpha is a monoclonal antibody (also designated 0.5 alpha; that is IgG1 and has kappa light chains) that binds to the cell membrane of T-cells infected with HTLV-I and lyses them in the presence of complement. The antibody does not react with HTLV-I-negative T cells. In electroblot assays, the monoclonal antibody detects a 46-kDa glycoprotein in disrupted HTLV-I virions and a 34-kDa product following digestion of the viral protein with endoglycosidase F. These molecules have been reported to represent the HTLV-I env gene products. The antibody does not react with HTLV-II and HTLV-III virions. Glycoproteins of 61 and 68 kDa, which are known to be encoded at least in part by the env gene of HTLV-I, are precipitated by the antibody from endogenously radiolabeled HTLV-I-infected HUT 102-B2 and MT-2 cells, respectively. These results suggest that this human monoclonal antibody reacts with an env-encoded glycoprotein of HTLV-I. By using a competition assay with a biotin-labeled 0.5 alpha antibody, we observed that 15 out of 15 patients with adult T-cell leukemia had antibodies that block binding of the 0.5 alpha antibody to HTLV-I virions. This suggests that the antigen detected by 0.5 alpha antibody is a common epitope recognized in HTLV-I-infected individuals in vivo. This antibody, as well as the general strategy for making human monoclonal antibodies reactive against pathogenic retroviruses, may have diagnostic or therapeutic application.

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References
1.
Sodroski J, Patarca R, Perkins D, Briggs D, Lee T, Essex M . Sequence of the envelope glycoprotein gene of type II human T lymphotropic virus. Science. 1984; 225(4660):421-4. DOI: 10.1126/science.6204380. View

2.
Lee T, Coligan J, Homma T, McLane M, Tachibana N, Essex M . Human T-cell leukemia virus-associated membrane antigens: identity of the major antigens recognized after virus infection. Proc Natl Acad Sci U S A. 1984; 81(12):3856-60. PMC: 345320. DOI: 10.1073/pnas.81.12.3856. View

3.
Mitsuya H, Guo H, Cossman J, Megson M, Reitz Jr M, Broder S . Functional properties of antigen-specific T cells infected by human T-cell leukemia-lymphoma virus (HTLV-I). Science. 1984; 225(4669):1484-6. DOI: 10.1126/science.6206569. View

4.
Lee T, Coligan J, McLane M, Sodroski J, Popovic M, Wong-Staal F . Serological cross-reactivity between envelope gene products of type I and type II human T-cell leukemia virus. Proc Natl Acad Sci U S A. 1984; 81(23):7579-83. PMC: 392190. DOI: 10.1073/pnas.81.23.7579. View

5.
McNamara M, Ward R, Kohler H . Monoclonal idiotope vaccine against Streptococcus pneumoniae infection. Science. 1984; 226(4680):1325-6. DOI: 10.1126/science.6505692. View