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  • ...ndrial metabolism research in South America: building a case for a local ''Drosophila'' stock center. https://doi.org/10.26124/mitofit:2023-0001 ...ndrial metabolism research in South America: building a case for a local ''Drosophila'' stock center.]<br/>
    2 KB (289 words) - 15:36, 15 March 2023
  • |abstract=Inverted Drosophila larvae which are permeabilized by digitonin. Their body walls are more or l |organism=Drosophila
    541 bytes (70 words) - 11:30, 8 November 2016
  • ...Aveiro Y, Couto-Lima CA (2023) A navigation chart to avoid turbulence in ''Drosophila'' mitochondrial research. MitoFit Preprints 2023.7. https://doi.org/10.2612 ...ira_2023_MitoFit_Spotlight.pdf A navigation chart to avoid turbulence in ''Drosophila'' mitochondrial research.]<br/>
    2 KB (328 words) - 16:40, 6 November 2023
  • ...:Publications]] [[Instrument and method::Oxygraph-2k]] [[Mammal and model::Drosophila]] |?Mammal and model=Organism
    1 KB (198 words) - 11:16, 11 November 2016
  • ...S, Inwongwan S, Camus MF, Lane N (2023) Harmonising protocols to measure ''Drosophila'' respiratory function in mitochondrial preparations. MitoFit Preprints 202 .../images/9/9b/Rodriguez_2023_MitoFit.pdf Harmonising protocols to measure ''Drosophila'' respiratory function in mitochondrial preparations.]<br/>
    2 KB (302 words) - 14:31, 1 August 2023
  • ...Aveiro Y, Couto-Lima CA (2023) A navigation chart to avoid turbulence in ''Drosophila'' mitochondrial research. Bioenerg Commun 2023.4. https://doi.org/10.26124/ ...re reproducible and comparative metabolic research in this important model organism.
    3 KB (342 words) - 16:39, 6 November 2023
  • ...012) Mitochondrial DNA variants influence mitochondrial bioenergetics in ''Drosophila melanogaster''. Mitochondrion 12:459-64. ...ignificant influence on mitochondrial bioenergetics that may change as the organism Ages.
    1 KB (189 words) - 17:26, 9 November 2017
  • ...S, Inwongwan S, Camus MF, Lane N (2023) Harmonizing protocols to measure ''Drosophila'' respiratory function in mitochondrial preparations. Bioenerg Commun 2023. ...ation and homogenization approaches, showing that the former are better in Drosophila thoraces. Finally, we assessed the concentration-dependent effect of variou
    3 KB (368 words) - 16:13, 21 August 2023
  • ...sard JP, Kirwan JP, Axelrod CL, Johnson AE (2021) CRISPR/Cas9-engineered ''Drosophila'' knock-in models to study VCP diseases. Dis Model Mech 14:dmm048603. ...-specific phenotypic differences in several mutants. Taken together, the ''Drosophila'' VCP disease models generated in this study will be useful for studying th
    2 KB (311 words) - 14:10, 19 July 2021
  • ...asurement of mitochondrial oxygen consumption in permeabilized fibers of ''Drosophila'' using minimal amounts of tissue. J Vis Exp 134. ...results obtained are highly reproducible. By combining the advantages of ''Drosophila'' as a model for the study of metabolism with the evaluation of mitochondri
    3 KB (375 words) - 13:59, 8 April 2020
  • ...chondrial effects of metabolic inflexibility induced by high fat diet in ''Drosophila melanogaster''. Insect Biochem Mol Biol 133:103556. ...hallmarks of the development of metabolic inflexibility and reinforce this organism as a suitable model for the study of metabolic disorders.
    3 KB (349 words) - 13:34, 20 October 2021
  • ...n in frontotemporal dementia/amyotrophic lateral sclerosis: lessons from ''Drosophila'' models. Front Neurosci 15:786076. https://doi.org/10.3389/fnins.2021.7860 ...ith FTD/ALS disrupt mitochondrial function, and we review how the use of ''Drosophila'' models has been pivotal to our current knowledge in this field.
    2 KB (268 words) - 15:12, 5 October 2023
  • |title=Costa AC, Loh SH, Martins LM (2013) ''Drosophila'' Trap1 protects against mitochondrial dysfunction in a PINK1/parkin model |info=[http://www.ncbi.nlm.nih.gov/pubmed?term=Drosophila%20Trap1%20protects%20against%20mitochondrial%20dysfunction%20in%20a%20PINK1
    3 KB (340 words) - 12:14, 27 March 2018
  • ...arkkila S. (2015) β carbonic anhydrase is required for female fertility in Drosophila melanogaster. Front Zool 12:19. ...xpression of the β-CA gene using UAS/GAL4-based RNA interference (RNAi) in Drosophila in vivo.
    2 KB (293 words) - 13:44, 27 March 2018
  • ...j-1β regulates oxidative stress, insulin-like signaling and development in Drosophila melanogaster. Cell Cycle 11:3876-86. ...1β in oxidative stress handling, insulin-like signaling and development in Drosophila melanogaster.
    2 KB (278 words) - 15:27, 26 March 2018
  • ...hancing folic acid metabolism suppresses defects associated with loss of ''Drosophila'' mitofusin. Cell Death Dis 10:288. ...ases, including CMT2A. Here, we have downregulated the expression of the ''Drosophila'' mitofusin (''dMfn'' RNAi) in adult flies and showed that this activates m
    2 KB (255 words) - 10:25, 1 April 2019
  • ...ization and consequences of mitochondrial pyruvate carrier deficiency in ''Drosophila melanogaster''. Metabolites 109:E363. ...fore reveals the flexibility of mitochondrial substrate oxidation allowing Drosophila to maintain cellular homeostasis.
    2 KB (309 words) - 20:53, 18 September 2020
  • |title=Eira da Costa AC (2013) ''Drosophila Trap1'' protects against mitochondrial dysfunction in a ''PINK1/parkin'' mo ...nclude that Trap1 works downstream of Pink1 and in parallel with parkin in Drosophila, and that enhancing its function may ameliorate mitochondrial dysfunction a
    2 KB (319 words) - 11:11, 28 April 2017
  • ...artins LM (2012) Genetic analysis of mitochondrial protein misfolding in ''Drosophila melanogaster''. Cell Death Differ doi:10.1038/cdd.2012.5. ...r autophagic degradation in vivo, and refractory to Sigma P (ref(2)P), the Drosophila orthologue of mammalian p62, is a critical downstream effector of this qual
    2 KB (312 words) - 13:37, 27 March 2018
  • ...>Ca</sub> (Slo) channel regulates mitochondrial function and lifespan in ''Drosophila melanogaster''. Cells 8:E945. ...establishes the presence of BK<sub>Ca</sub> channels in mitochondria of ''Drosophila'' and ascertains its novel physiological role in regulating mitochondrial s
    2 KB (325 words) - 08:52, 26 August 2019

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