Department of Physics, Chemistry, and Biology, Linköping University, Linköping, Sweden.
Princess Margaret Cancer Centre, University Health Network, Toronto, Ontario, Canada.
Nat Struct Mol Biol. 2019 Nov;26(11):1035-1043. doi: 10.1038/s41594-019-0321-z. Epub 2019 Nov 4.
Transcription factor c-MYC is a potent oncoprotein; however, the mechanism of transcriptional regulation via MYC-protein interactions remains poorly understood. The TATA-binding protein (TBP) is an essential component of the transcription initiation complex TFIID and is required for gene expression. We identify two discrete regions mediating MYC-TBP interactions using structural, biochemical and cellular approaches. A 2.4 -Å resolution crystal structure reveals that human MYC amino acids 98-111 interact with TBP in the presence of the amino-terminal domain 1 of TBP-associated factor 1 (TAF1). Using biochemical approaches, we have shown that MYC amino acids 115-124 also interact with TBP independently of TAF1. Modeling reveals that this region of MYC resembles a TBP anchor motif found in factors that regulate TBP promoter loading. Site-specific MYC mutants that abrogate MYC-TBP interaction compromise MYC activity. We propose that MYC-TBP interactions propagate transcription by modulating the energetic landscape of transcription initiation complex assembly.
转录因子 c-MYC 是一种有效的癌蛋白;然而,通过 MYC-蛋白相互作用进行转录调控的机制仍知之甚少。TATA 结合蛋白 (TBP) 是转录起始复合物 TFIID 的必需组成部分,是基因表达所必需的。我们使用结构、生化和细胞方法鉴定了介导 MYC-TBP 相互作用的两个离散区域。2.4Å 分辨率的晶体结构揭示了人类 MYC 的氨基酸 98-111 在 TBP 相关因子 1(TAF1)的氨基末端结构域 1 的存在下与 TBP 相互作用。通过生化方法,我们已经表明 MYC 的氨基酸 115-124 也与 TBP 相互作用,而不依赖于 TAF1。建模表明,该区域的 MYC 类似于调节 TBP 启动子加载的因子中的 TBP 锚定基序。特异性 MYC 突变体破坏 MYC-TBP 相互作用,从而破坏 MYC 活性。我们提出 MYC-TBP 相互作用通过调节转录起始复合物组装的能量景观来传播转录。