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The amyloid structure of mouse RIPK3 (receptor interacting protein kinase 3) in cell necroptosis.
Wu, Xia-Lian; Hu, Hong; Dong, Xing-Qi; Zhang, Jing; Wang, Jian; Schwieters, Charles D; Liu, Jing; Wu, Guo-Xiang; Li, Bing; Lin, Jing-Yu; Wang, Hua-Yi; Lu, Jun-Xia.
  • Wu XL; School of Life Science and Technology, ShanghaiTech University, Shanghai, PR China.
  • Hu H; CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai, PR China.
  • Dong XQ; University of Chinese Academy of Sciences, Beijing, PR China.
  • Zhang J; School of Life Science and Technology, ShanghaiTech University, Shanghai, PR China.
  • Wang J; CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai, PR China.
  • Schwieters CD; University of Chinese Academy of Sciences, Beijing, PR China.
  • Liu J; School of Life Science and Technology, ShanghaiTech University, Shanghai, PR China.
  • Wu GX; CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai, PR China.
  • Li B; University of Chinese Academy of Sciences, Beijing, PR China.
  • Lin JY; School of Life Science and Technology, ShanghaiTech University, Shanghai, PR China.
  • Wang HY; CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai, PR China.
  • Lu JX; University of Chinese Academy of Sciences, Beijing, PR China.
Nat Commun ; 12(1): 1627, 2021 03 12.
Article en En | MEDLINE | ID: mdl-33712586
ABSTRACT
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 ß-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 ß-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.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Proteína Serina-Treonina Quinasas de Interacción con Receptores / Necroptosis / Amiloide Límite: Animals / Humans Idioma: En Año: 2021 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Proteína Serina-Treonina Quinasas de Interacción con Receptores / Necroptosis / Amiloide Límite: Animals / Humans Idioma: En Año: 2021 Tipo del documento: Article