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 PMID:32755591  

Structural and Mechanistic Regulation of the Pro-degenerative NAD Hydrolase SARM1.

Matthew Bratkowski | Tian Xie | Desiree A Thayer | Shradha Lad | Prakhyat Mathur | Yu-San Yang | Gregory Danko | Thomas C Burdett | Jean Danao | Aaron Cantor | Jennifer A Kozak | Sean P Brown | Xiaochen Bai | Shilpa Sambashivan
Cell reports | 2020

The NADase SARM1 is a central switch in injury-activated axon degeneration, an early hallmark of many neurological diseases. Here, we present cryo-electron microscopy (cryo-EM) structures of autoinhibited (3.3 Å) and active SARM1 (6.8 Å) and provide mechanistic insight into the tight regulation of SARM1's function by the local metabolic environment. Although both states retain an octameric core, the defining feature of the autoinhibited state is a lock between the autoinhibitory Armadillo/HEAT motif (ARM) and catalytic Toll/interleukin-1 receptor (TIR) domains, which traps SARM1 in an inactive state. Mutations that break this lock activate SARM1, resulting in catastrophic neuronal death. Notably, the mutants cannot be further activated by the endogenous activator nicotinamide mononucleotide (NMN), and active SARM1 is product inhibited by Nicotinamide (NAM), highlighting SARM1's functional dependence on key metabolites in the NAD salvage pathway. Our studies provide a molecular understanding of SARM1's transition from an autoinhibited to an injury-activated state and lay the foundation for future SARM1-based therapies to treat axonopathies.

Pubmed ID: 32755591

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This is a list of tools and resources that we have found mentioned in this publication.


Phenix (tool)

RRID:SCR_014224

A Python-based software suite for the automated determination of molecular structures using X-ray crystallography and other methods. Phenix includes programs for assessing data quality, experimental phasing, molecular replacement, model building, structure refinement, and validation. It also includes tools for reflection data and creating maps and models. Phenix can also be used for neutron crystallography. Tutorials and examples are available in the documentation tab.

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MolProbity (tool)

RRID:SCR_014226

A structure-validation web application which provides an expert-system consultation about the accuracy of a macromolecular structure model, diagnosing local problems and enabling their correction. MolProbity works best as an active validation tool (used as soon as a model is available and during each rebuild/refine loop) and when used for protein and RNA crystal structures, but it may also work well for DNA, ligands and NMR ensembles. It produces coordinates, graphics, and numerical evaluations that integrate with either manual or automated use in systems such as PHENIX, KiNG, or Coot.

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SWISS-MODEL (tool)

RRID:SCR_018123

Software tool as fully automated protein structure homology modeling server, accessible via ExPASy web server, or from program DeepView Swiss Pdb-Viewer. Structural bioinformatics web-server dedicated to homology modeling of 3D protein structures. Used to make protein modelling accessible to all biochemists and molecular biologists.

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Agilent 1260 Infinity II LC System (tool)

RRID:SCR_019355

This HPLC offers choice of modules for analytical HPLC and entry level UHPLC, delivering performance, reliability, and robustness.

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SARM1 (D2M5I) Rabbit mAb (antibody)

RRID:AB_2798090

This monoclonal targets SARM1

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C57BL/6J (organism)

RRID:IMSR_JAX:000664

Mus musculus with name C57BL/6J from IMSR.

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University of California at San Francisco Advanced Microscopy Core Facility (service resource)

RRID:SCR_025781

Core includes instrumentation for structural biology with focus on cryo-electron microscopy. Used for imaging ranging from atomic resolution to whole cells, with emphasis on linking structural and dynamics information with biological functions.

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