Stowers Institute for Medical Research, Kansas City, Missouri, USA.
Stowers Institute for Medical Research, Kansas City, Missouri, USA; Department of Pathology & Laboratory Medicine, University of Kansas Medical Center, Kansas City, Kansas, USA.
Mol Cell Proteomics. 2020 Sep;19(9):1468-1484. doi: 10.1074/mcp.RA120.002078. Epub 2020 May 28.
Despite the continued analysis of HDAC inhibitors in clinical trials, the heterogeneous nature of the protein complexes they target limits our understanding of the beneficial and off-target effects associated with their application. Among the many HDAC protein complexes found within the cell, Sin3 complexes are conserved from yeast to humans and likely play important roles as regulators of transcriptional activity. The presence of two Sin3 paralogs in humans, SIN3A and SIN3B, may result in a heterogeneous population of Sin3 complexes and contributes to our poor understanding of the functional attributes of these complexes. Here, we profile the interaction networks of SIN3A and SIN3B to gain insight into complex composition and organization. In accordance with existing data, we show that Sin3 paralog identity influences complex composition. Additionally, chemical cross-linking MS identifies domains that mediate interactions between Sin3 proteins and binding partners. The characterization of rare SIN3B proteoforms provides additional evidence for the existence of conserved and divergent elements within human Sin3 proteins. Together, these findings shed light on both the shared and divergent properties of human Sin3 proteins and highlight the heterogeneous nature of the complexes they organize.
尽管在临床试验中对 HDAC 抑制剂进行了持续的分析,但它们所针对的蛋白质复合物的异质性限制了我们对其应用相关的有益和非靶效应的理解。在细胞中发现的许多 HDAC 蛋白质复合物中,Sin3 复合物从酵母到人类都是保守的,并且可能作为转录活性调节剂发挥重要作用。人类中存在两种 Sin3 同源物,SIN3A 和 SIN3B,可能导致 Sin3 复合物的异质群体,并导致我们对这些复合物的功能属性的理解较差。在这里,我们对 SIN3A 和 SIN3B 的相互作用网络进行了分析,以深入了解复合物的组成和组织。与现有数据一致,我们表明 Sin3 同源物的身份会影响复合物的组成。此外,化学交联 MS 鉴定了介导 Sin3 蛋白与结合伙伴之间相互作用的结构域。稀有 SIN3B 蛋白水解产物的特征提供了证据,证明了人类 Sin3 蛋白中存在保守和不同的元件。这些发现共同揭示了人类 Sin3 蛋白的共同和不同特性,并强调了它们组织的复合物的异质性。