Martinez Marissa R, Kiselar Janna, Wang Benlian, Sadalge Dipti, Zawadzke Laura, Taherbhoy Asad, Musser Derek, Davenport Yunji, Setser Jeremy, Chance Mark R, Bellon Steve
Foghorn Therapeutics, 500 Technology Square, Suite 700, Cambridge, Massachusetts 02139, United States.
NeoProteomics, Moreland Hills, Ohio 44022, United States.
ACS Bio Med Chem Au. 2024 Jun 17;4(4):204-213. doi: 10.1021/acsbiomedchemau.4c00009. eCollection 2024 Aug 21.
The BRG-/BRM-associated factor (BAF) chromatin remodeling complex is a central actor in transcription. One mechanism by which BAF affects gene expression is via its various histone mark readers, including double plant homeodomains (DPF), located in the BAF45D subunit. DPF domains recognize lysine acetyl and acylations, including crotonylation, localized at promoters and enhancers. Despite a significant degree of conservation between DPF domains, attempts to crystallize BAF45D with a crotonylated histone 3 peptide (H3K14Cr) were unsuccessful. In addition, recent cryoEM and modeled structures failed to define the Req domain of BAF45D, which is responsible for reading lysine modifications. Thus, the precise mechanism of crotonyl group recognition and binding by BAF45D within the BAF complex remains unclear. We turned to protein footprinting mass spectrometry to map the binding interface between H3K14Cr and BAF45D. This technique is able to demarcate protein-binding interfaces by modifying surface-accessible residues and is not limited by protein size or composition. Experiments performed in the isolated DPF domain of BAF45D (BAF45D)-delineated H3K14Cr peptide binding across the PHD1 and PHD2 pockets. We observed markedly similar effects on the BAF45D subunit when assessing H3K14Cr binding in the purified full BAF complex. The ATPase motor, BRM, also displayed H3K14Cr-protected peptides in two separate domains that were subsequently evaluated in direct binding assays. These data confirm the BAF45D-crotonylamide interaction within its obligate complex and are the first to demonstrate H3K14Cr direct binding to BRM.
BRG-/BRM相关因子(BAF)染色质重塑复合体是转录过程中的核心参与者。BAF影响基因表达的一种机制是通过其各种组蛋白标记阅读器,包括位于BAF45D亚基中的双植物同源结构域(DPF)。DPF结构域识别位于启动子和增强子处的赖氨酸乙酰化和酰化,包括巴豆酰化。尽管DPF结构域之间存在高度保守性,但尝试将BAF45D与巴豆酰化组蛋白3肽(H3K14Cr)结晶却未成功。此外,最近的冷冻电镜和建模结构未能确定BAF45D负责读取赖氨酸修饰的Req结构域。因此,BAF复合物中BAF45D识别和结合巴豆酰基的确切机制仍不清楚。我们转向蛋白质足迹质谱法来绘制H3K14Cr与BAF45D之间的结合界面。该技术能够通过修饰表面可及残基来划定蛋白质结合界面,并且不受蛋白质大小或组成的限制。在BAF45D的分离DPF结构域(BAF45D)中进行的实验描绘了H3K14Cr肽在PHD1和PHD2口袋中的结合情况。当在纯化的完整BAF复合物中评估H3K14Cr结合时,我们在BAF45D亚基上观察到了明显相似的效应。ATP酶马达BRM在两个单独的结构域中也显示出H3K14Cr保护的肽段,随后在直接结合试验中对其进行了评估。这些数据证实了BAF45D在其必需复合物中与巴豆酰胺的相互作用,并且首次证明了H3K14Cr与BRM的直接结合。