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Nucleosome eviction from MHC class II promoters controls positioning of the transcription start site

机译:从MHC II类启动子驱逐核小体控制转录起始位点的定位

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摘要

Nucleosome depletion at transcription start sites (TSS) has been documented genome-wide in multiple eukaryotic organisms. However, the mechanisms that mediate this nucleosome depletion and its functional impact on transcription remain largely unknown. We have studied these issues at human MHC class II (MHCII) genes. Activation-induced nucleosome free regions (NFR) encompassing the TSS were observed at all MHCII genes. Nucleosome depletion was exceptionally strong, attaining over 250-fold, at the promoter of the prototypical HLA-DRA gene. The NFR was induced primarily by the transcription factor complex that assembles on the conserved promoter-proximal enhancer situated upstream of the TSS. Functional analyses performed in the context of native chromatin demonstrated that displacing the NFR without altering the sequence of the core promoter induced a shift in the position of the TSS. The NFR thus appears to play a critical role in transcription initiation because it directs correct TSS positioning in vivo. Our results provide support for a novel mechanism in transcription initiation whereby the position of the TSS is controlled by nucleosome eviction rather than by promoter sequence.
机译:在多种真核生物中,全基因组范围内的转录起始位点(TSS)的核小体耗竭已被记录。但是,介导这种核小体耗竭及其对转录的功能影响的机制仍是未知之数。我们已经研究了人类MHC II类(MHCII)基因的这些问题。在所有MHCII基因上都观察到了活化诱导的无核小体的区域,包括TSS。在原型HLA-DRA基因的启动子处,核小体耗竭异常强烈,达到了250倍以上。 NFR主要是由转录因子复合物诱导的,该复合物组装在位于TSS上游的保守启动子-近端增强子上。在天然染色质的背景下进行的功能分析表明,在不改变核心启动子序列的情况下置换NFR会导致TSS位置发生变化。因此,NFR似乎在转录起始中起关键作用,因为它指导体内正确的TSS定位。我们的结果为转录起始中的一种新型机制提供了支持,由此TSS的位置由核小体逐出而不是由启动子序列控制。

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