Department of Animal Sciences, Purdue University, West Lafayette, IN, USA.
Epigenetics Chromatin. 2020 Nov 3;13(1):48. doi: 10.1186/s13072-020-00370-8.
ATP-dependent chromatin remodeling by histone-modifying enzymes and chromatin remodeling complexes is crucial for maintaining chromatin organization and facilitating gene transcription. In the SWI/SNF family of ATP-dependent chromatin remodelers, distinct complexes such as BAF, PBAF, GBAF, esBAF and npBAF/nBAF are of particular interest regarding their implications in cellular differentiation and development, as well as in various diseases. The recently identified BAF subcomplex GBAF is no exception to this, and information is emerging linking this complex and its components to crucial events in mammalian development. Furthermore, given the essential nature of many of its subunits in maintaining effective chromatin remodeling function, it comes as no surprise that aberrant expression of GBAF complex components is associated with disease development, including neurodevelopmental disorders and numerous malignancies. It becomes clear that building upon our knowledge of GBAF and BAF complex function will be essential for advancements in both mammalian reproductive applications and the development of more effective therapeutic interventions and strategies. Here, we review the roles of the SWI/SNF chromatin remodeling subcomplex GBAF and its subunits in mammalian development and disease.
依赖于 ATP 的组蛋白修饰酶和染色质重塑复合物的染色质重塑对于维持染色质组织和促进基因转录至关重要。在 SWI/SNF 家族的 ATP 依赖性染色质重塑剂中,不同的复合物,如 BAF、PBAF、GBAF、esBAF 和 npBAF/nBAF,因其在细胞分化和发育以及各种疾病中的作用而受到特别关注。最近发现的 BAF 亚基复合物 GBAF 也不例外,并且有信息表明该复合物及其成分与哺乳动物发育中的关键事件有关。此外,鉴于其许多亚基在维持有效的染色质重塑功能方面的重要性,毫不奇怪,GBAF 复合物成分的异常表达与疾病的发展有关,包括神经发育障碍和许多恶性肿瘤。显然,在我们对 GBAF 和 BAF 复合物功能的了解的基础上进行进一步研究,对于哺乳动物生殖应用的进展以及更有效治疗干预和策略的发展至关重要。在这里,我们回顾了 SWI/SNF 染色质重塑亚基复合物 GBAF 及其亚基在哺乳动物发育和疾病中的作用。