Allelic exclusion of IgH chain expression is stringently established before or during early B cell maturation. It likely relies both on cellular mechanisms, selecting those cells in which a single receptor allows the best possible Ag response, and on molecular restrictions of gene accessibility to rearrangement. The extent to which transcriptional control may be involved is unclear. Transcripts arising from nonfunctional alleles would undergo nonsense-mediated degradation and their virtual absence in mature cells cannot ensure that transcription per se is down-regulated. By contrast, somatic hypermutation may provide an estimate of primary transcription in Ag-activated cells since both processes are directly correlated. For coding regions, ...
International audienceIntroduction: Two scaffold/matrix attachment regions (5'-and 3'-MARs Eμ) flank...
The DNA sequence data of the somatic hypermutation (SHM) field published since 1984 has been critica...
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...
AbstractTo identify DNA sequences that target the somatic hypermutation process, the immunoglobulin ...
International audienceInteractions with cognate antigens recruit activated B cells into germinal cen...
AbstractHow rearranged immunoglobulin (Ig) genes are further diversified by somatic hypermutation is...
AbstractThree mutant immunoglobulin heavy chain (IgH) insertion mice were generated in which a targe...
Somatic hypermutation (SH) of V(D)J rearrangements at the IGH and IGL loci diversifies the IG repert...
AbstractStudies with transgenic mice are beginning to define the minimal requirements for the somati...
International audienceImmunoglobulin (Ig) genes naturally acquire frequent premature termination cod...
AbstractSomatic hypermutation (SHM) requires selective targeting of the mutational machinery to the ...
Somatic hypermutation (SH) generates point mutations within rearranged immunoglobulin (Ig) genes of ...
Hypermutation of the immunoglobulin (Ig) genes requires Activation Induced cytidine Deaminase (AID) ...
During the adaptive immune response, antigen challenge triggers a million-fold increase in mutation ...
International audienceIntroduction: Two scaffold/matrix attachment regions (5'-and 3'-MARs Eμ) flank...
The DNA sequence data of the somatic hypermutation (SHM) field published since 1984 has been critica...
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...
AbstractTo identify DNA sequences that target the somatic hypermutation process, the immunoglobulin ...
International audienceInteractions with cognate antigens recruit activated B cells into germinal cen...
AbstractHow rearranged immunoglobulin (Ig) genes are further diversified by somatic hypermutation is...
AbstractThree mutant immunoglobulin heavy chain (IgH) insertion mice were generated in which a targe...
Somatic hypermutation (SH) of V(D)J rearrangements at the IGH and IGL loci diversifies the IG repert...
AbstractStudies with transgenic mice are beginning to define the minimal requirements for the somati...
International audienceImmunoglobulin (Ig) genes naturally acquire frequent premature termination cod...
AbstractSomatic hypermutation (SHM) requires selective targeting of the mutational machinery to the ...
Somatic hypermutation (SH) generates point mutations within rearranged immunoglobulin (Ig) genes of ...
Hypermutation of the immunoglobulin (Ig) genes requires Activation Induced cytidine Deaminase (AID) ...
During the adaptive immune response, antigen challenge triggers a million-fold increase in mutation ...
International audienceIntroduction: Two scaffold/matrix attachment regions (5'-and 3'-MARs Eμ) flank...
The DNA sequence data of the somatic hypermutation (SHM) field published since 1984 has been critica...
Somatic hypermutation of immunoglobulin genes is an important contributor to antibody diversity. Lac...