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Reference - PMID:30658998 - A yeast-based screening assay identifies repurposed drugs that suppress mitochondrial fusion and mtDNA maintenance defects.

Reference summary

PubMed ID
PMID:30658998
Title
A yeast-based screening assay identifies repurposed drugs that suppress mitochondrial fusion and mtDNA maintenance defects.
Authors
Delerue T, Tribouillard-Tanvier D, Daloyau M, Khosrobakhsh F, Emorine LJ, Friocourt G, Belenguer P, Blondel M, Arnauné-Pelloquin L
Citation
Dis Model Mech 2019 Feb 07;12(2)
Publication year
2019
Abstract
Mitochondria continually move, fuse and divide, and these dynamics are essential for the proper function of the organelles. Indeed, the dynamic balance of fusion and fission of mitochondria determines their morphology and allows their immediate adaptation to energetic needs as well as preserving their integrity. As a consequence, mitochondrial fusion and fission dynamics and the proteins that control these processes, which are conserved from yeast to human, are essential, and their disturbances are associated with severe human disorders, including neurodegenerative diseases. For example, mutations in OPA1 , which encodes a conserved factor essential for mitochondrial fusion, lead to optic atrophy 1, a neurodegeneration that affects the optic nerve, eventually leading to blindness. Here, by screening a collection of ∼1600 repurposed drugs on a fission yeast model, we identified five compounds able to efficiently prevent the lethality associated with the loss of Msp1p, the fission yeast ortholog of OPA1. One compound, hexestrol, was able to rescue both the mitochondrial fragmentation and mitochondrial DNA (mtDNA) depletion induced by the loss of Msp1p, whereas the second, clomifene, only suppressed the mtDNA defect. Yeast has already been successfully used to identify candidate drugs to treat inherited mitochondrial diseases; this work may therefore provide useful leads for the treatment of optic atrophies such as optic atrophy 1 or Leber hereditary optic neuropathy.

Annotation

Single locus phenotype

FYPO:0003769 - decreased cellular mtDNA level

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FYPO:0001355 - decreased vegetative cell population growth

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FYPO:0002061 - inviable vegetative cell population

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FYPO:0006911 - normal growth on hexestrol

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FYPO:0006913 - normal growth on ketoconazole

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FYPO:0006914 - normal growth on terconazole

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FYPO:0006910 - normal growth on vanoxerine

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FYPO:0006034 - normal mitochondrion

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FYPO:0003810 - small fragmented mitochondria present in increased numbers

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