Decoding necrosome assembly: harmonizing signal amplification and attenuation through optimal RIP3 stoichiometry

X Xiang Li Y Yating Cao F Fei Xu Y Yiting Zhang Y Yue Kong C Chengjie Lan R Rongfeng Zhu C Cheng Lin C Chuan-Qi Zhong Z Zhilong Liu H Hong Qi Y Yichuan Huang Y Yunshan Xiao G Gui-Quan Sun J Jianwei Shuai X Xin Chen

Abstract

Abstract Necrosome assembly is essential for necroptosis, a process implicated in neurodegeneration, ischemic injury, and inflammatory diseases. Yet the spatiotemporal rules governing this assembly remain elusive. Leveraging quantitative STORM and mathematical modeling, we define an approximately 3:1 ratio of RIP3 to RIP1 in necrosomes as the optimal stoichiometry for necroptosis, enabling signal amplification and a threshold response. Surprisingly, excessive RIP3 oligomerization attenuates signaling, acting as an intrinsic size control mechanism. RIP3 assembly is dynamically regulated: it is constrained by stimulation and RIP1, promoted by RIP3 itself, and unexpectedly limited by downstream MLKL. A complementary balance between necrosome quantity and RIP3 assembly degree ensures efficient MLKL phosphorylation. In contrast, Caspase-8 assembly is limited by c-FLIP and recruited linearly by RIP1, while its distinct behavior from RIP3 underlies the biphasic necroptotic response to RIP1. These findings uncover the flexible, multi-strategic nature of signalosomes and offer valuable insights for therapeutic and synthetic biology.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 23, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

X

Xiang Li

Y

Yating Cao

F

Fei Xu

Y

Yiting Zhang

Y

Yue Kong

C

Chengjie Lan

R

Rongfeng Zhu

C

Cheng Lin

C

Chuan-Qi Zhong

Z

Zhilong Liu

H

Hong Qi

Y

Yichuan Huang

Y

Yunshan Xiao

G

Gui-Quan Sun

J

Jianwei Shuai

X

Xin Chen