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Updated: May 22, 2026

Expression Analysis of Mammalian Linker-histone Subtypes
Published on: March 19, 2012
Mice lacking Sμ tandem repeats maintain RNA polymerase patterns but exhibit histone modification pattern shifts
Barbara B Balter1, David N Ciccone, Marjorie A Oettinger
1Immunology Program and Department of Pathology, Tufts University School of Medicine, Boston, MA 02111, USA.
Abstract:
Antibody switching involves class switch recombination (CSR) events between switch (S) regions located upstream of heavy chain constant (C) genes. Mechanisms targeting CSR to S-regions are not clear. Deletion of Sμ tandem repeat (SμTR) sequences causes CSR to shift into downstream regions that do not undergo CSR in WT B-cells, including the Cμ-region. We now find that, in SμTR(-/-) B cells, Sμ chromatin histone modification patterns also shift downstream relative to WT and coincide with SμTR(-/-) CSR locations. Our results suggest that histone H3 acetylation and methylation are involved in accessibility of switch regions and that these modifications are not dependent on the underlying sequence, but may be controlled by the location of upstream promoter or regulatory elements. Our studies also show RNA polymerase II (RNAPII) loading increases in the Eμ/Iμ region in stimulated B cells; these increases are independent of SμTR sequences. Longer Sμ deletions have been reported to eliminate increases in RNAPII density, therefore we suggest that sequences between Iμ and Sμ (possibly the Iμ splicing region as well as G-tracts that are involved in stable RNA:DNA complex formation during transcription) might control the RNAPII density increases.
Insights
Class switch recombination (CSR) shifts downstream in B cells lacking Sμ tandem repeats (SμTR), altering histone modifications. These changes suggest regulatory elements, not DNA sequence, control CSR accessibility and RNA polymerase II loading.
Area of Science:
- Immunology
- Molecular Biology
- Epigenetics
Background:
- Antibody class switch recombination (CSR) directs immunoglobulin class diversification.
- Mechanisms guiding CSR to specific switch (S) regions remain unclear.
Purpose of the Study:
- Investigate the role of Sμ tandem repeat (SμTR) sequences in directing CSR.
- Determine how SμTR deletion impacts Sμ chromatin modifications and RNA polymerase II (RNAPII) loading.
Main Methods:
- Comparative analysis of B cells with and without SμTR sequences.
- Chromatin immunoprecipitation to assess histone modifications (acetylation, methylation).
- Analysis of RNAPII loading at specific genomic regions.
Main Results:
- Deletion of SμTR sequences causes CSR to occur in non-canonical downstream regions.
- Histone modification patterns shift downstream in SμTR(-/-) B cells, correlating with CSR locations.
- RNAPII loading increases in the Eμ/Iμ region upon stimulation, independent of SμTR.
Conclusions:
- Histone modifications (H3 acetylation, methylation) are crucial for switch region accessibility and may be regulated by promoter proximity.
- Sequences between Iμ and Sμ, potentially including the Iμ splicing region and G-tracts, may control RNAPII density increases during CSR.
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