预印本 / 版本 1

Raw Defines a Distinct TIR-fold cADPR Hydrolase Family and Cooperates with dSarm in Development and Axon Degeneration

本文是预印本,尚未经过同行评审认证。

作者

    Feng Chen,  Zhuo Chen,  Yongjun Tan,  Xin Ye Shen,  Matthew Leong,  Jian Yuan Yang,  Wan Hua Li,  Yun Nan Hou,  Guo Bao,  Yue Jun Chen,  Yu Ran Ma,  Ting-Fung Chan,  Hon Cheung Lee,  Gyeong Hun Baeg,  Dapeng Zhang,  Yong Juan Zhao
    Yong Juan Zhao
    • 香港中文大学(深圳)
分类
关键词
Raw/OLRN-1; cADPR; NAD; SARM1/dSarm; TIR domain; axon degeneration; development; evolutionary analysis

摘要

Conserved TIR domain proteins play essential roles in immune signaling, development, and neurodegeneration. Here, we identify Raw as a member of a distinct TIR protein family that functions as a cADPR-specific hydrolase, with catalytic mutations phenocopying delayed axon degeneration. While Raw and dSarm synergistically deplete NAD to drive axon degeneration, they antagonistically regulate cADPR levels in S2 cells, modulating development-related genes via the Ask1/JNK pathway, a non-canonical cADPR signaling mechanism independent of calcium mobilization. Consistently, Raw knockdown in fly wing discs elevates JNK phosphorylation, alters developmental gene expression, and causes wing defects, all rescued by Ask1 knockdown. Similarly, dSarm overexpression induces pupal lethality, which is also reversed by Ask1 suppression. Phylogenetic analysis reveals the co-evolution of dSarm and Raw across species, with conserved cADPR-hydrolysis activity observed in C. elegans Olrn-1. These findings underscore the distinct yet cooperative roles of dSarm and Raw in cADPR signaling-mediated development and NAD depletion-driven axon degeneration.

指标

收藏: 1
查看次数: 271
下载次数: 58

DOI:

Submission ID:

62

下载次数

已发布

2025-12-19

如何引用

Chen, F., Chen, Z., Tan, Y., Shen, X. Y., Leong, M., Yang, J. Y., Li, W. H., Hou, Y. N., Bao, G., Chen, Y. J., Ma, Y. R., Chan, T.-F., Lee, H. C., Baeg, G. H., Zhang, D., & Zhao, Y. J. (2025). Raw Defines a Distinct TIR-fold cADPR Hydrolase Family and Cooperates with dSarm in Development and Axon Degeneration. 浪淘沙预印本平台. https://doi.org/10.65215/fgmp5913

利益冲突声明

作者声明无任何需要披露的利益冲突。