Investigating impacts of marine sponge derived mycothiazole and its acetylated derivative on mitochondrial function and aging.
Dutta, N.; Gerke, J. A.; Ordon, S. F.; Morris, J. D.; Hruby, A.; Torres, T. C.; Shemtov, S.; Clark, J. G.; Chang, M. C.; Shaghasi, H.; Ray, M. N.; Averbukh, M.; Hoang, S.; Oorloff, M.; Alcala, A.; Vega, M.; Mehta, H. H.; Max, T. A.; Crews, P.; Vermulst, M.; Garcia, G.; Johnson, T. A.; Higuchi-Sanabria, R.
Show abstract
Small molecule inhibitors of the mitochondrial electron transport chain (ETC) hold significant promise to provide valuable insights to the field of mitochondrial research and aging biology. In this study, we investigated two molecules: mycothiazole (MTZ) - from the marine sponge C. mycofijiensis and its more stable semisynthetic analog 8-O-acetylmycothiazole (8-OAc) as potent and selective chemical probes based on their high efficiency to inhibit ETC complex I function. Similar to rotenone (Rote), a widely used ETC complex I inhibitor, these two molecules showed cytotoxicity to cancer cells but strikingly demonstrate a lack of toxicity to non-cancer cells, a highly beneficial feature in the development of anti-cancer therapeutics. Furthermore, in vivo experiments with these small molecules utilizing C.elegans model demonstrate their unexplored potential to investigate aging studies. We observed that both molecules have the ability to induce a mitochondria-specific unfolded protein response (UPRMT) pathway, that extends lifespan of worms when applied in their adult stage. Interestingly, we also found that these two molecules employ different pathways to extend lifespan in worms. Whereas MTZ utilize the transcription factors ATFS-1 and HSF-1, which are involved in the UPRMT and heat shock response (HSR) pathways respectively, 8-OAc only required HSF-1 and not ATFS-1 to mediate its effects. This observation underscores the value of applying stable, potent, and selective next generation chemical probes to elucidate an important insight into the functional roles of various protein subunits of ETC complexes and their regulatory mechanisms associated with aging.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Computer prediction and genetic analysis identifies retinoic acid modulation as a driver of conserved longevity pathways in genetically-diverse Caenorhabditis nematodes 95%
- Crotamiton derivative JM03 extends lifespan and improves oxidative and hypertonic stress resistance in Caenorhabditis elegans via inhibiting OSM-9 94%
- Ether Lipid Biosynthesis Promotes Lifespan Extension and Enables Diverse Prolongevity Paradigms 94%
Similar papers in this journal
- Potassium-chelating drug sodium polystyrene sulfonate enhances lysosomal function and suppresses proteotoxicity 96%
- Antioxidants green tea extract and nordihydroguaiaretic acid confer species and strain specific lifespan and health effects in Caenorhabditis nematodes 95%
- Automated Lifespan Determination Across Caenorhabditis Strains and Species Reveals Assay-Specific Effects of Chemical Interventions 95%
Similar papers in this journal
- Cyrene: A Novel Geroprotective Compound that Extends Lifespan and Healthspan in C. elegans and Drosophila 96%
- Sex-specific insights into drug-induced lifespan extension and weight loss in mice 93%
- Reporting quality, effect sizes, and biases for aging interventions: a methodological appraisal of the DrugAge database 92%
Similar papers in this journal
- Motor dysfunction in Drosophila melanogaster as a biomarker for developmental neurotoxicity 94%
- Multi-omics analysis identifies essential regulators of mitochondrial stress response in two wild-type C. elegans strains 94%
- SIN-3 transcriptional coregulator maintains mitochondrial homeostasis and polyamine flux 93%
Similar papers in this journal
- Bacterial processing of glucose modulates C. elegans lifespan and healthspan 94%
- Organophosphorus diisopropylfluorophosphate (DFP) intoxication in zebrafish larvae causes behavioral defects, neuronal hyperexcitation and neuronal death 93%
- Sanguinarine activates ATM/ATR-mediated CHK-1 signaling to drive p53-dependent apoptosis in the C. elegans germline 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.