category
NAR
date
Feb 27, 2026
slug
status
Published
summary
通过整合NMR、氢氘交换质谱和多种相互作用实验,发现N-myc转录激活结构域与TFIIIC5的DNA结合结构域存在直接相互作用;AlphaFold模型预测了N-myc与TFIIIC5的结合模式,并揭示TFIIIC5 C端酸性插头的移除可增强结合,阐明了两者相互调控的竞争机制。
tags
蛋白质组学
type
Post
📄 原文题目
Mechanism of interaction between the transactivation domain of N-myc and the DNA-binding surface of TFIIIC5
🔗 原文链接
💡 AI 核心解读
通过整合NMR、氢氘交换质谱和多种相互作用实验,发现N-myc转录激活结构域与TFIIIC5的DNA结合结构域存在直接相互作用;AlphaFold模型预测了N-myc与TFIIIC5的结合模式,并揭示TFIIIC5 C端酸性插头的移除可增强结合,阐明了两者相互调控的竞争机制。
📝 英文原版摘要
<span class="paragraphSection"><div class="boxTitle">Abstract</div>N-myc is a transcription factor, a powerful driver of cellular growth and an important oncoprotein. N-myc interacts with many factors, including the RNA Polymerase III assembly factor, TFIIIC, a six-subunit complex that is essential for the transcription of small, structured RNA. TFIIIC and N-myc mutually restrict each other’s chromatin association, and their complex contributes to quality control in mRNA transcription. We previously demonstrated that the intrinsically disordered transactivation domain of N-myc interacts directly with a sub-complex of TFIIIC, τA. Structural studies by others show that DNA binding of τA is largely mediated by TFIIIC3, leaving open the role of the DNA-binding domain of TFIIIC5. Here, we demonstrate that this domain is a binding site for two regions in the transactivation domain of N-myc, through an integrated approach combining NMR spectroscopy, hydrogen–deuterium exchange mass spectrometry, and interaction assays (pull-downs, ITC, fluorescence polarization, and co-immunoprecipitation). AlphaFold modelling predicts with high-confidence a binding mode for the higher affinity N-myc motif that overlaps with the predicted intramolecular binding site of the C-terminal acidic plug of TFIIIC5, removal of which enhances the binding of N-myc. This model elucidates how the N-myc:TFIIIC5 interaction competes with DNA and other interactions, providing a basis for their mutual regulation.</span>
- 作者:NotionNext
- 链接:https://tangly1024.com/article/31448bd6-1f96-8185-9e3d-dd0d787a77d2
- 声明:本文采用 CC BY-NC-SA 4.0 许可协议,转载请注明出处。
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