Identification of a stimulus‐dependent DNase I hypersensitive site between the Iα and Cα exons during immunoglobulin heavy chain class switch recombination
Open Access
- 7 February 2000
- journal article
- Published by Wiley in FEBS Letters
- Vol. 467 (2-3) , 268-272
- https://doi.org/10.1016/s0014-5793(00)01151-0
Abstract
The complete humoral response to foreign antigen depends upon two distinct recombination events within the heavy chain locus of immunoglobulin. The first recombination event takes place in what will become the antigen combining site of the antibody molecule, encoded by V, D and J segments. The second recombination event involves the looping‐out of large spans of DNA which separate the various clusters of heavy chain exons which define the different immunoglobulin isotypes, or classes. While a great deal has been learned about the nature of the VDJ recombinase, very little is known about the nature of the class‐switch recombinase. Using a cell system where class‐switch recombination occurs primarily to the IgA locus, we have looked for stimulus‐dependent changes in the chromatin structure of the IgA locus which might result from interactions between components of the recombinase and cis‐elements within the region. We present evidence that strongly suggests that the class‐switch recombinase interacts between the Iα and Cα exons of IgA, just upstream of the highly reiterated DR1 and DR2 elements. However, although multiple potential SMAD‐4 sites are located precisely within the DNase I hypersensitive site and 160 bp upstream of that site, we failed to detect any evidence of DNA/protein interactions near the hypersensitive site. Moreover, recombinant SMAD‐3/4 proteins fail to interact with these sites with appreciable affinity in vitro. These data suggest that some other structural alteration at this site (e.g. RNA/DNA hybrid) may mediate the nuclease sensitivity.Keywords
This publication has 26 references indexed in Scilit:
- Human Smad3 and Smad4 Are Sequence-Specific Transcription ActivatorsPublished by Elsevier ,1998
- The Immunoglobulin Class Switch: Beyond “Accessibility”Immunity, 1997
- High frequency class switching of an lgM+ B lymphoma clone CH12F3 to lgA+ cellsInternational Immunology, 1996
- Switch Transcripts in Immunoglobulin Class SwitchingScience, 1995
- A class switch control region at the 3′ end of the immunoglobulin heavy chain locusCell, 1994
- Towards a comprehensive view of immunoglobulin class switchingImmunology Today, 1993
- Circular DNA is excised by immunoglobulin class switch recombinationCell, 1990
- Switch circular DNA formed in cytokine-treated mouse splenocytes: Evidence for intramolecular DNA deletion in immunoglobulin class switchingCell, 1990
- RAG-1 and RAG-2, Adjacent Genes That Synergistically Activate V(D)J RecombinationScience, 1990
- Lymphokine Control of In Vivo Immunoglobulin Isotype SelectionAnnual Review of Immunology, 1990