FADDDED filaments coordinate complex IIa assembly during TNF-induced apoptosis
成果类型:
Article
署名作者:
Chen, Ying; Huynh, Vinh Thang; Lai, Lihua; Liu, Ping; Li, Tongyang; Tan, Yaw Bia; Chew, Che Shin; Velazquez, Amhed Missael Vargas; Samsudin, Firdaus; Marzinek, Jan K.; Bond, Peter J.; Wu, Bin; Luo, Dahai; Tergaonkar, Vinay
署名单位:
Agency for Science Technology & Research (A*STAR); A*STAR - Institute of Molecular & Cell Biology (IMCB); Nanyang Technological University; Nanyang Technological University; Agency for Science Technology & Research (A*STAR); A*STAR - Bioinformatics Institute (BII); National University of Singapore; Nanyang Technological University; National Centre for Infectious Diseases Singapore; National University of Singapore
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-9603
DOI:
10.1073/pnas.2425802122
发表日期:
2025-08-26
关键词:
nf-kappa-b
activation
caspase-8
domain
fas
necroptosis
reveals
摘要:
Extrinsic apoptosis is initiated by signaling from death receptors, leading to the assembly of RIPK1, FADD, and caspase-8 complex. Subsequently, caspase-8 forms a filamentous structure through the oligomerization of its tandem death effector domain (tDED), resulting in caspase activation and cell death. Although the DED of FADD (FADDDED) is homologous to the tDEDs of caspase-8 (casp8tDED) and both oligomerize to function, the functional form of FADDDED oligomer in extrinsic apoptosis remains unclear. Here, using cryogenic-electron microscopy, we elucidate the structure of FADDDED filaments comprising three helical chains assembled through three types of iterative interactions. Mutations disrupting FADDDED filament formation impair the recruitment of RIPK1 and caspase-8, and abrogate the cell death response, suggesting that FADDDED filamentation represents an important mechanistic step in the initiation of TNF-induced extrinsic apoptosis. Contrary to the belief that the homotypic death domains of RIPK1 and FADD are solely responsible for their interaction, we here show this interaction requires FADDDED filamentation. Furthermore, cFLIP can disrupt FADDDED filaments, uncovering an additional antiapoptotic mechanism of cFLIP beyond its disruption of caspase-8 filament. Molecular dynamics simulations reveal that FADDDED filament thermodynamically favors casp8tDED monomer over FADDDED monomer, thus explaining the hierarchy and stoichiometry of FADD/caspase-8 complex assembly. These findings highlight the hitherto unappreciated roles of FADDDED filament formation in extrinsic apoptosis.