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March 15, 2026Neuron4 citationsOpen Access

Targeting PGAM5-driven mitochondrial integrated stress response slows ALS progression across subtypes

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ZZZhilong ZhengWYWangju YangZCZhen Chen

Key Points

  • Investigate the role of PGAM5 in ALS progression and its potential as a therapeutic target.
  • Conducted a CRISPR-Cas9 screen to identify PGAM5's role in ALS pathogenesis.
  • Analyzed PGAM5 levels in spinal cords from sporadic ALS patients and mouse models.
  • Utilized inhibitors to disrupt PGAM5-OMA1 interactions and assess effects on mtISR.
  • Evaluated the impact of telmisartan on ALS-related phenotypes.
  • Identified PGAM5 as a key mediator linked to neuromuscular junction disruption.
  • Disruption of PGAM5 interaction slowed disease progression in ALS models.
  • Pharmacological inhibition reduced mtISR activation and improved motor function.

Abstract

Amyotrophic lateral sclerosis (ALS) is genetically and clinically heterogeneous, yet convergent pathogenic mechanisms remain poorly defined. A CRISPR-Cas9 screen identified phosphoglycerate mutase-5 (PGAM5) as a common mediator of ALS pathogenesis. PGAM5 activates the mitochondrial integrated stress response (mtISR) via dephosphorylation of metallopeptidase OMA1 at Ser223 and Ser237, thereby driving neuromuscular junction disruption and motor deficits. We show that PGAM5 is a substrate of valosin-containing protein (VCP) and is consistently elevated in spinal cords from sporadic ALS patients, in human spinal cord organoids derived from sporadic or familial ALS, and in ALS mouse models. The disruption of PGAM5-OMA1 interaction by a selective inhibitor (TAT-PO1) or pharmacological inhibition of PGAM5 with telmisartan suppresses mtISR activation and ameliorates ALS-related phenotypes by reshaping mtISR outputs in a manner distinct from those elicited by activation of translation initiation factor 2B (eIF2B). These findings establish PGAM5 as a convergent and actionable therapeutic target across ALS subtypes.

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Cite This Study

Zheng et al. (2026) studied this question.

synapsesocial.com/papers/69b64c67b42794e3e660da83https://doi.org/10.1016/j.neuron.2026.02.003
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