Autonomous driving paper index

Non-canonical signaling hubs upon inhibition of MyD88-ERK interaction in cancer

2026-07-30 · Cell Death and Disease

autonomous driving

One-line summary

Abstract The RAS-MAPK pathway is frequently dysregulated in cancer, leading to malignant transformation.

Engineering notes

Key topics: autonomous driving. See the paper for implementation details and experimental results.

Chinese explanation / 中文解读

中文解读待补充:本站会优先为端到端自动驾驶、BEV感知、3D目标检测、轨迹预测、路径规划、LiDAR感知等高价值论文补充中文说明。

Original abstract

Abstract The RAS-MAPK pathway is frequently dysregulated in cancer, leading to malignant transformation. We previously identified a direct interaction between MyD88, a central adaptor of inflammatory signaling, and ERK, the terminal kinase of the RAS-MAPK cascade. Pharmacologic disruption of this ERK-MyD88 complex with a small molecule induces immunogenic cell death and antitumor immunity, suggesting a novel therapeutic strategy. Here, we show that ERK-MyD88 inhibition drives cellular signaling from non-canonical hubs. First, ERK-MyD88 disruption activates an integrated stress response that drives caspase-8-dependent apoptosis through a FADD-independent pathway within p62-ubiquitin aggregates. Second, it promotes assembly of MyD88, IRAK1, and IRAK4 into Myddosomes that produce proinflammatory chemokines independently of TLR or IL-1R activation. These findings demonstrate that perturbation of the ERK-MyD88 complex rewires cellular signaling into cell-autonomous hubs that coordinate caspase activation with chemokine secretion, thereby driving a program of immunogenic cancer cell death.

5.0Engineering value
8.0Research novelty
5.0Business relevance

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