From the Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania "Luigi Vanvitelli," 81100 Caserta, Italy.
the Institute for Applied Mathematics "Mauro Picone" (IAC), National Research Council, 80131 Naples, Italy, and.
J Biol Chem. 2019 Jan 18;294(3):861-873. doi: 10.1074/jbc.RA118.004882. Epub 2018 Nov 20.
The highly conserved zinc finger CCCTC-binding factor (CTCF) regulates genomic imprinting and gene expression by acting as a transcriptional activator or repressor of promoters and insulator of enhancers. The multiple functions of CTCF are accomplished by co-association with other protein partners and are dependent on genomic context and tissue specificity. Despite the critical role of CTCF in the organization of genome structure, to date, only a subset of CTCF interaction partners have been identified. Here we present a large-scale identification of CTCF-binding partners using affinity purification and high-resolution LC-MS/MS analysis. In addition to functional enrichment of specific protein families such as the ribosomal proteins and the DEAD box helicases, we identified novel high-confidence CTCF interactors that provide a still unexplored biochemical context for CTCF's multiple functions. One of the newly validated CTCF interactors is BRG1, the major ATPase subunit of the chromatin remodeling complex SWI/SNF, establishing a relationship between two master regulators of genome organization. This work significantly expands the current knowledge of the human CTCF interactome and represents an important resource to direct future studies aimed at uncovering molecular mechanisms modulating CTCF pleiotropic functions throughout the genome.
高度保守的锌指 CCCTC 结合因子(CTCF)通过作为启动子的转录激活或抑制因子以及增强子的绝缘子来调节基因组印记和基因表达。CTCF 的多种功能通过与其他蛋白伴侣的共同关联来实现,并依赖于基因组背景和组织特异性。尽管 CTCF 在基因组结构的组织中起着关键作用,但迄今为止,仅鉴定出 CTCF 相互作用伙伴的一小部分。在这里,我们使用亲和纯化和高分辨率 LC-MS/MS 分析大规模鉴定 CTCF 结合伙伴。除了核糖体蛋白和 DEAD 盒解旋酶等特定蛋白家族的功能富集外,我们还鉴定了新的高可信度 CTCF 相互作用因子,为 CTCF 的多种功能提供了一个尚未探索的生化背景。新验证的 CTCF 相互作用因子之一是 BRG1,染色质重塑复合物 SWI/SNF 的主要 ATP 酶亚基,在两个基因组组织的主要调节剂之间建立了关系。这项工作大大扩展了人类 CTCF 相互作用组的现有知识,并为指导未来旨在揭示调节 CTCF 多效性功能的分子机制的研究提供了重要资源。