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SARM1 activation promotes axonal degeneration via a two-step phase transition by Wenbin Zhang & Qinyi Zhou & Jun Zhang & Jiachen Wang & Qingcui Wu & Sanduo Zheng & Xiaodong Wang instant download

  • SKU: EBN-238350228
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Instant download (eBook) SARM1 activation promotes axonal degeneration via a two-step phase transition after payment.
Authors:Wenbin Zhang & Qinyi Zhou & Jun Zhang & Jiachen Wang & Qingcui Wu & Sanduo Zheng & Xiaodong Wang
Pages:updating ...
Year:2025
Publisher:x
Language:english
File Size:7.24 MB
Format:pdf
Categories: Ebooks

Product desciption

SARM1 activation promotes axonal degeneration via a two-step phase transition by Wenbin Zhang & Qinyi Zhou & Jun Zhang & Jiachen Wang & Qingcui Wu & Sanduo Zheng & Xiaodong Wang instant download

Nature Chemical Biology, doi:10.1038/s41589-025-02009-9

SARM1 is a key executioner of axonal degeneration, acting through NAD⁺ depletion by NADase activity of its TIR domain. Although normally autoinhibited, SARM1 becomes activated in response to axonal damage; however, the underlying mechanism remains unclear. Here, using a class of pyridine-containing compounds that trigger SARM1-dependent axon degeneration, we uncover a two-step activation process. First, NMN primes the base exchange activity of SARM1, generating covalent adducts between ADP-ribose (an NAD⁺ hydrolysis product) and the compounds. These ADP-ribose conjugates then serve as molecular glues to promote the assembly of superhelical SARM1 flaments, in which TIR domains adopt an active confguration. After reaching solubility limits, these flaments condense into stable, phase-separated assemblies with full enzymatic activity. Unexpectedly, several clinical-stage SARM1 inhibitors targeting its TIR domain also form such adducts, paradoxically promoting its activation. These fndings reveal a molecular mechanism that spatially restricts SARM1 activation to damaged axons and ofer new guidance for therapeutic strategies targeting SARM1.

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