AbstractTo identify DNA sequences that target the somatic hypermutation process, the immunoglobulin gene promoter located upstream of the variable (V) region was duplicated upstream of the constant (C) region of a κ transgene. Normally, κ genes are somatically mutated only in the VJ region, but not in the C region. In B cell hybridomas from mice with this κ transgene (P5′C), both the VJ region and the C region, but not the region between them, were mutated at similar frequencies, suggesting that the mutation mechanism is related to transcription. The downstream promoter was not occluded by transcripts from the upstream promoter. In fact, the levels of transcripts originating from the two promoters were similar, supporting a mutation model b...
AbstractSomatic hypermutation (SHM) requires selective targeting of the mutational machinery to the ...
AbstractThe frequency of somatic hypermutations of an Ig κ transgene with an artificial test insert,...
During the murine immune response, mice can produce eight classes of antibody molecules. These class...
AbstractTo identify DNA sequences that target the somatic hypermutation process, the immunoglobulin ...
AbstractThree mutant immunoglobulin heavy chain (IgH) insertion mice were generated in which a targe...
AbstractHow rearranged immunoglobulin (Ig) genes are further diversified by somatic hypermutation is...
Somatic hypermutation of immunoglobulin genes is an important contributor to antibody diversity. Lac...
Allelic exclusion of IgH chain expression is stringently established before or during early B cell m...
AbstractStudies with transgenic mice are beginning to define the minimal requirements for the somati...
The history and current development of the reverse transcriptase model of somatic hypermutation (RT-...
The V1 gene encodes the heavy chain variable region of antibodies that bind to phosphorylchollne in ...
The rate and nature of hypermutation of immunoglobulin genes are of prime importance in the affinity...
Somatic hypermutation of immunoglobulin genes is a tightly controlled, site directed process. The nu...
The DNA sequence data of the somatic hypermutation (SHM) field published since 1984 has been critica...
The VH5 human antibody gene was analyzed using a computer program (mfg) which simulates transcriptio...
AbstractSomatic hypermutation (SHM) requires selective targeting of the mutational machinery to the ...
AbstractThe frequency of somatic hypermutations of an Ig κ transgene with an artificial test insert,...
During the murine immune response, mice can produce eight classes of antibody molecules. These class...
AbstractTo identify DNA sequences that target the somatic hypermutation process, the immunoglobulin ...
AbstractThree mutant immunoglobulin heavy chain (IgH) insertion mice were generated in which a targe...
AbstractHow rearranged immunoglobulin (Ig) genes are further diversified by somatic hypermutation is...
Somatic hypermutation of immunoglobulin genes is an important contributor to antibody diversity. Lac...
Allelic exclusion of IgH chain expression is stringently established before or during early B cell m...
AbstractStudies with transgenic mice are beginning to define the minimal requirements for the somati...
The history and current development of the reverse transcriptase model of somatic hypermutation (RT-...
The V1 gene encodes the heavy chain variable region of antibodies that bind to phosphorylchollne in ...
The rate and nature of hypermutation of immunoglobulin genes are of prime importance in the affinity...
Somatic hypermutation of immunoglobulin genes is a tightly controlled, site directed process. The nu...
The DNA sequence data of the somatic hypermutation (SHM) field published since 1984 has been critica...
The VH5 human antibody gene was analyzed using a computer program (mfg) which simulates transcriptio...
AbstractSomatic hypermutation (SHM) requires selective targeting of the mutational machinery to the ...
AbstractThe frequency of somatic hypermutations of an Ig κ transgene with an artificial test insert,...
During the murine immune response, mice can produce eight classes of antibody molecules. These class...