Franz André, Ackermann Leena, Hoppe Thorsten
Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases, Institute for Genetics, University of Cologne Cologne, Germany.
Front Genet. 2016 May 3;7:73. doi: 10.3389/fgene.2016.00073. eCollection 2016.
The dynamic composition of proteins associated with nuclear DNA is a fundamental property of chromosome biology. In the chromatin compartment dedicated protein complexes govern the accurate synthesis and repair of the genomic information and define the state of DNA compaction in vital cellular processes such as chromosome segregation or transcription. Unscheduled or faulty association of protein complexes with DNA has detrimental consequences on genome integrity. Consequently, the association of protein complexes with DNA is remarkably dynamic and can respond rapidly to cellular signaling events, which requires tight spatiotemporal control. In this context, the ring-like AAA+ ATPase CDC48/p97 emerges as a key regulator of protein complexes that are marked with ubiquitin or SUMO. Mechanistically, CDC48/p97 functions as a segregase facilitating the extraction of substrate proteins from the chromatin. As such, CDC48/p97 drives molecular reactions either by directed disassembly or rearrangement of chromatin-bound protein complexes. The importance of this mechanism is reflected by human pathologies linked to p97 mutations, including neurodegenerative disorders, oncogenesis, and premature aging. This review focuses on the recent insights into molecular mechanisms that determine CDC48/p97 function in the chromatin environment, which is particularly relevant for cancer and aging research.
与核DNA相关的蛋白质动态组成是染色体生物学的一项基本特性。在染色质区室中,特定的蛋白质复合物控制着基因组信息的精确合成和修复,并在诸如染色体分离或转录等重要细胞过程中决定DNA的压缩状态。蛋白质复合物与DNA的异常或错误结合会对基因组完整性产生有害影响。因此,蛋白质复合物与DNA的结合非常动态,能够对细胞信号事件迅速做出反应,这需要严格的时空控制。在这种情况下,环状AAA+ ATP酶CDC48/p97成为标记有泛素或SUMO的蛋白质复合物的关键调节因子。从机制上讲,CDC48/p97作为一种分离酶,促进底物蛋白从染色质中提取出来。因此,CDC48/p97通过直接拆卸或重排与染色质结合蛋白复合物来驱动分子反应。这种机制的重要性体现在与p97突变相关的人类疾病中,包括神经退行性疾病、肿瘤发生和早衰。本综述重点关注了近期对决定CDC48/p97在染色质环境中功能的分子机制的见解,这与癌症和衰老研究尤为相关。