Chesnutt Kristin V, Yayli Gizem, Toelzer Christine, Damilot Mylène, Cox Khan, Gautam Gunjan, Berger Imre, Tora László, Poirier Michael G
Ohio State Biochemistry Program, Ohio State University, 191 W. Woodruff Ave. Columbus, OH, 43210, USA.
Institut de Génétique et de Biologie Moléculaire et Cellulaire, 1 Rue Laurent Fries 67400 Illkirch, France.
Nucleic Acids Res. 2025 Jan 7;53(1). doi: 10.1093/nar/gkae1120.
Transcription initiation involves the coordination of multiple events, starting with activators binding specific DNA target sequences, which recruit transcription coactivators to open chromatin and enable binding of general transcription factors and RNA polymerase II to promoters. Two key human transcriptional coactivator complexes, ATAC (ADA-two-A-containing) and SAGA (Spt-Ada-Gcn5 acetyltransferase), containing histone acetyltransferase (HAT) activity, target genomic loci to increase promoter accessibility. To better understand the function of ATAC and SAGA HAT complexes, we used in vitro biochemical and biophysical assays to characterize human ATAC and SAGA HAT module interactions with nucleosomes and how a transcription factor (TF) coordinates these interactions. We found that ATAC and SAGA HAT modules bind nucleosomes with high affinity, independent of their HAT activity and the tested TF. ATAC and SAGA HAT modules directly interact with the VP16 activator domain and this domain enhances acetylation activity of both HAT modules. Surprisingly, ATAC and SAGA HAT modules increase TF binding to its DNA target site within the nucleosome by an order of magnitude independent of histone acetylation. Altogether, our results reveal synergistic coordination between HAT modules and a TF, where ATAC and SAGA HAT modules (i) acetylate histones to open chromatin and (ii) facilitate TF targeting within nucleosomes independently of their acetylation activity.
转录起始涉及多个事件的协调,始于激活因子结合特定的DNA靶序列,这些序列招募转录共激活因子以打开染色质,并使通用转录因子和RNA聚合酶II能够结合启动子。两种关键的人类转录共激活因子复合物,即含ADA2A的ATAC(含两个ADA2A)和SAGA(Spt-Ada-Gcn5乙酰转移酶),具有组蛋白乙酰转移酶(HAT)活性,靶向基因组位点以增加启动子的可及性。为了更好地理解ATAC和SAGA HAT复合物的功能,我们使用体外生化和生物物理分析来表征人类ATAC和SAGA HAT模块与核小体的相互作用,以及转录因子(TF)如何协调这些相互作用。我们发现,ATAC和SAGA HAT模块以高亲和力结合核小体,与其HAT活性和测试的TF无关。ATAC和SAGA HAT模块直接与VP16激活域相互作用,并且该域增强了两个HAT模块的乙酰化活性。令人惊讶的是,ATAC和SAGA HAT模块使TF与其在核小体内的DNA靶位点的结合增加了一个数量级,而与组蛋白乙酰化无关。总之,我们的结果揭示了HAT模块与TF之间的协同协调,其中ATAC和SAGA HAT模块(i)使组蛋白乙酰化以打开染色质,以及(ii)促进TF在核小体内的靶向,与其乙酰化活性无关。