寡聚RIPK1是CD95坏死体的主要核心成分。

Nikita V Ivanisenko,Corinna König,Laura K Hillert-Richter,Maria A Feoktistova,Sabine Pietkiewicz,Max Richter,Diana Panayotova-Dimitrova,Thilo Kaehne,Inna N Lavrik
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引用次数: 0

摘要

坏死体是引发坏死坏死的关键大分子信号传导平台,是一种依赖RIPK1/ ripk3的细胞死亡程序,在多细胞生物的炎症控制中起重要作用。然而,坏死体的组成和结构仍然不完全清楚。在这里,我们使用生化分析、定量质谱分析和AlphaFold模型来破译CD95L/ bv6诱导的坏死体的组成并推导出结构模型。我们确定RIPK1是坏死体的中心成分,形成了这个复合体的核心。此外,AlphaFold模型还揭示了RIPK1寡聚化的结构机制,强调了FADD和RIPK1死亡结构域(dd)之间ii型相互作用在RIPK1介导复合物组装中的关键作用。ii型DD相互作用在坏死下垂诱导中的作用通过结构引导的位点定向诱变得到进一步验证。我们的研究结果可能对坏死下垂网络的药理学靶向治疗与细胞死亡和炎症失调相关的疾病有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oligomerised RIPK1 is the main core component of the CD95 necrosome.
The necrosome is the key macromolecular signaling platform initiating necroptosis, i.e., a RIPK1/RIPK3-dependent program of cell death with an important role in the control of inflammation in multicellular organisms. However, the composition and structure of the necrosome remain incompletely understood. Here we use biochemical assays, quantitative mass spectrometry, and AlphaFold modeling to decipher the composition and derive a structural model of the CD95L/BV6-induced necrosome. We identify RIPK1 as the central component of the necrosome, forming the core of this complex. In addition, AlphaFold modeling provides insights into the structural mechanisms underlying RIPK1 oligomerization, highlighting the critical role of type-II interactions between the Death Domains (DDs) of FADD and RIPK1 in the assembly of RIPK1-mediated complexes. The role of type-II DD interactions in necroptosis induction is further validated through structure-guided site-directed mutagenesis. Our findings could be useful for the pharmacological targeting of the necroptosis network to treat diseases associated with dysregulated cell death and inflammation.
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