4.8 Article

PIK3C2B inhibition improves function and prolongs survival in rnyotubular myopathy animal models

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 126, Issue 9, Pages 3613-3625

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI86841

Keywords

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Funding

  1. University of Michigan Department of Pediatrics
  2. Taubman Center at the University of Michigan
  3. Muscular Dystrophy Association
  4. NIH K08 career development award
  5. Myotubular Trust
  6. Canadian Institutes for Health Research

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Myotubular myopathy (MTM) is a devastating pediatric neuromuscular disorder of phosphoinositide (PIP) metabolism resulting from mutations of the PIP phosphatase MTM1 for which there are no treatments. We have previously shown phosphatidylinositol-3-phosphate (PI3P) accumulation in animal models of MTM. Here, we tested the hypothesis that lowering PI3P levels may prevent or reverse the MTM disease process. To test this, we targeted class II and III P13 kinases (PI3Ks) in an MTM1-deficient mouse model. Muscle-specific ablation of Pik3c2b, but not Pik3c3, resulted in complete prevention of the MTM phenotype, and postsymptomatic targeting promoted a striking rescue of disease. We confirmed this genetic interaction in zebrafish, and additionally showed that certain PI3K inhibitors prevented development of the zebrafish mtm phenotype. Finally, the PI3K inhibitor wortmannin improved motor function and prolonged lifespan of the Mtml-deficient mice. In all, we have identified Pik3c2b as a genetic modifier of Mtm1 mutation and demonstrated that PIK3C2B inhibition is a potential treatment strategy for MTM. In addition, we set the groundwork for similar reciprocal inhibition approaches for treating other PIP metabolic disorders and highlight the importance of modifier gene pathways as therapeutic targets.

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