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Mice lacking Sμ tandem repeats maintain RNA polymerase patterns but exhibit histone modification pattern shifts linked to class switch site locations

机译:缺乏Sμ串联的小鼠重复维持RNA聚合酶图案但表现出与课堂开关现场位置相关的组蛋白修改模式换档

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摘要

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.
机译:抗体切换涉及在重链常数(C)基因上游的开关区域之间的阶级开关重组(CSR)事件。针对CSR到S-S区的机制尚不清楚。 SμDANDEM重复(SμTR)序列的删除导致CSR转换到在WT B细胞中不经过CSR的下游区域,包括Cμ区。我们现在发现,在SμTr/ - B细胞中,Sμ染色质组蛋白修饰模式也相对于WT的下游移位,并与SμTr/ - CSR位置一致。我们的研究结果表明,组蛋白H3乙酰化和甲基化参与了开关区域的可访问性,并且这些修饰不依赖于下游序列,但可以由上游启动子或调节元件的位置控制。我们的研究还显示RNA聚合酶II(RNAPII)在刺激的B细胞中的Eμ/μm区域中加载增加;这些增加与SμTr序列无关。据报道,较长的Sμ缺失以消除RNAPII密度的增加,因此我们建议Iμ和Sμ之间的序列(可能是肝脏剪接区域以及涉及稳定RNA的G型术期间转录中的DNA复合物形成)可能控制RNAPII密度增加。

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