Absence of somatic mutation in the variable region of MPC 11 variants expressing a different heavy chain isotype.
Gary L. Gilmore, J Q Yang, Kenneth B. Marcu, Barbara K. Birshtein
Abstract
Gary L. Gilmore, J Q Yang, Kenneth B. Marcu, Barbara K. Birshtein
Abstract
Somatic mutation of immunoglobulin variable regions contributes to the diversity of the immune response. Some investigators have postulated that somatic mutation is coupled to isotype switching; others have presented evidence that the two processes are not linked. By using in vitro variants of the MPC 11 mouse myeloma cell line that produce heavy chains of different isotypes, we have examined several VH regions at the nucleotide level using a variety of different sequencing procedures. We have found no evidence of somatic mutation and conclude that the processes of somatic mutation and isotype switching may be independent.
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Somatic mutation of immunoglobulin variable regions contributes to the diversity of the immune response. Some investigators have postulated that somatic mutation is coupled to isotype switching; others have presented evidence that the two processes are not linked. By using in vitro variants of the MPC 11 mouse myeloma cell line that produce heavy chains of different isotypes, we have examined several VH regions at the nucleotide level using a variety of different sequencing procedures. We have found no evidence of somatic mutation and conclude that the processes of somatic mutation and isotype switching may be independent.
Key concepts: Isotype, Somatic cell, Immunoglobulin class switching, Biology, Mutation, Germline mutation, Immunoglobulin heavy chain, Genetics