Department of Biochemistry, University of Utah Health Sciences Center, Salt Lake City, Utah 84112.
Department of Pathology, University of Utah Health Sciences Center, Salt Lake City, Utah 84112.
Genetics. 2019 Mar;211(3):877-892. doi: 10.1534/genetics.118.301853. Epub 2019 Jan 24.
FACT (FAcilitates Chromatin Transcription/Transactions) is a histone chaperone that can destabilize or assemble nucleosomes. Acetylation of histone H3-K56 weakens a histone-DNA contact that is central to FACT activity, suggesting that this modification could affect FACT functions. We tested this by asking how mutations of H3-K56 and FACT affect nucleosome reorganization activity , and chromatin integrity and transcript output Mimics of unacetylated or permanently acetylated H3-K56 had different effects on FACT activity as expected, but the same mutations had surprisingly similar effects on global transcript levels. The results are consistent with emerging models that emphasize FACT's importance in establishing global chromatin architecture prior to transcription, promoting transitions among different states as transcription profiles change, and restoring chromatin integrity after it is disturbed. Optimal FACT activity required the availability of both modified and unmodified states of H3-K56. Perturbing this balance was especially detrimental for maintaining repression of genes with high nucleosome occupancy over their promoters and for blocking antisense transcription at the +1 nucleosome. The results reveal a complex collaboration between H3-K56 modification status and multiple FACT functions, and support roles for nucleosome reorganization by FACT before, during, and after transcription.
FACT(促进染色质转录/交易)是一种组蛋白伴侣,能够使核小体不稳定或组装。组蛋白 H3-K56 的乙酰化削弱了与 FACT 活性密切相关的组蛋白-DNA 接触,表明这种修饰可能会影响 FACT 的功能。我们通过询问 H3-K56 和 FACT 的突变如何影响核小体重排活性以及染色质完整性和转录产物输出来检验这一点。未乙酰化或永久性乙酰化的 H3-K56 模拟物对 FACT 活性的影响与预期相符,但相同的突变对全局转录水平的影响却惊人地相似。这些结果与新兴的模型一致,这些模型强调 FACT 在转录前建立全局染色质结构的重要性,在转录特征改变时促进不同状态之间的转变,并在染色质受到干扰后恢复其完整性。FACT 的最佳活性需要 H3-K56 的修饰和未修饰状态都可用。扰乱这种平衡对维持高核小体占有率基因启动子的抑制以及阻止+1 核小体处的反义转录特别不利。这些结果揭示了 H3-K56 修饰状态与 FACT 的多种功能之间的复杂协作,并支持 FACT 在转录前后对核小体重排的作用。