坏死性下垂
裂谷1
淀粉样蛋白(真菌学)
细胞生物学
化学
程序性细胞死亡
生物
生物化学
细胞凋亡
无机化学
作者
Xialian Wu,Hong Hu,Xing-Qi Dong,Jing Zhang,Jian Wang,Charles D. Schwieters,Jing Liu,Guoxiang Wu,Bing Li,Jing‐Yu Lin,Huayi Wang,Junxia Lu
标识
DOI:10.1038/s41467-021-21881-2
摘要
RIPK3 amyloid complex plays crucial roles during TNF-induced necroptosis and in response to immune defense in both human and mouse. Here, we have structurally characterized mouse RIPK3 homogeneous self-assembly using solid-state NMR, revealing a well-ordered N-shaped amyloid core structure featured with 3 parallel in-register β-sheets. This structure differs from previously published human RIPK1/RIPK3 hetero-amyloid complex structure, which adopted a serpentine fold. Functional studies indicate both RIPK1-RIPK3 binding and RIPK3 amyloid formation are essential but not sufficient for TNF-induced necroptosis. The structural integrity of RIPK3 fibril with three β-strands is necessary for signaling. Molecular dynamics simulations with a mouse RIPK1/RIPK3 model indicate that the hetero-amyloid is less stable when adopting the RIPK3 fibril conformation, suggesting a structural transformation of RIPK3 from RIPK1-RIPK3 binding to RIPK3 amyloid formation. This structural transformation would provide the missing link connecting RIPK1-RIPK3 binding to RIPK3 homo-oligomer formation in the signal transduction.
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