Seifert Anne, Schofield Pietà, Barton Geoffrey J, Hay Ronald T
Centre for Gene Regulation and Expression, College of Life Sciences, University of Dundee, Dundee, Scotland DD1 5EH, UK.
Sci Signal. 2015 Jul 7;8(384):rs7. doi: 10.1126/scisignal.aaa2213.
The small ubiquitin-like modifier 2 (SUMO-2) is required for survival when cells are exposed to treatments that induce proteotoxic stress by causing the accumulation of misfolded proteins. Exposure of cells to heat shock or other forms of proteotoxic stress induces the conjugation of SUMO-2 to proteins in the nucleus. We investigated the chromatin landscape of SUMO-2 modifications in response to heat stress. Through chromatin immunoprecipitation assays coupled to high-throughput DNA sequencing and mRNA sequencing, we showed that in response to heat shock, SUMO-2 accumulated at nucleosome-depleted, active DNA regulatory elements, which represented binding sites for large protein complexes and were predominantly associated with active genes. However, SUMO did not act as a direct transcriptional repressor or activator of these genes during heat shock. Instead, integration of our results with published proteomics data on heat shock-induced SUMO-2 substrates supports a model in which the conjugation of SUMO-2 to proteins acts as an acute stress response that is required for the stability of protein complexes involved in gene expression and posttranscriptional modification of mRNA. We showed that the conjugation of SUMO-2 to chromatin-associated proteins is an integral component of the proteotoxic stress response, and propose that SUMO-2 fulfills its essential role in cell survival by contributing to the maintenance of protein complex homeostasis.
当细胞暴露于通过导致错误折叠蛋白积累而诱导蛋白毒性应激的处理时,小泛素样修饰物2(SUMO-2)是细胞存活所必需的。将细胞暴露于热休克或其他形式的蛋白毒性应激会诱导SUMO-2与细胞核中的蛋白质结合。我们研究了热应激响应中SUMO-2修饰的染色质景观。通过与高通量DNA测序和mRNA测序相结合的染色质免疫沉淀分析,我们发现,响应热休克时,SUMO-2在核小体缺失的活性DNA调控元件处积累,这些元件代表大型蛋白质复合物的结合位点,并且主要与活性基因相关。然而,在热休克期间,SUMO并非这些基因的直接转录抑制因子或激活因子。相反,将我们的结果与已发表的关于热休克诱导的SUMO-2底物的蛋白质组学数据相结合,支持了一个模型,即SUMO-2与蛋白质的结合作为一种急性应激反应,是基因表达和mRNA转录后修饰中涉及的蛋白质复合物稳定性所必需的。我们表明,SUMO-2与染色质相关蛋白的结合是蛋白毒性应激反应的一个组成部分,并提出SUMO-2通过有助于维持蛋白质复合物的稳态在细胞存活中发挥其重要作用。