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Sciortino, M.

Publications and source records attributed to Sciortino, M..

2 recordsLinked to original sources

Ringer Loss in Uncovers Mitochondrial Complex I Deficits Characteristic of Human Parkinson's Disease

Tubulin polymerization promoting proteins (TPPPs) are known for their cytoskeletal regulation across species; however, emerging evidence suggests broader cellular functions, including potential roles in mitochondrial biology. Here, we identify the Drosophila homolog of human TPPP, Ringer, as a previously unrecognized regulator of mitochondrial bioenergetics and electron transport chain complex I (CI) function. Ringer is enriched in the mitochondrial matrix, and its loss results in reduced levels of multiple CI subunits and assembly factors and a significant decrease in CI enzymatic activity. Notably, similar deficits are observed in postmortem human Parkinsons disease (PD) brain tissues, underscoring the translational relevance of our Drosophila model and highlighting conserved, disease-associated mechanisms. Pharmacological administration of the CI-specific reactive oxygen species (ROS) scavenger, resveratrol, ameliorates superoxide levels and improves CI enzymatic activity and ATP production in ringer mutants, demonstrating that targeted antioxidant therapeutics can improve bioenergetic function with Ringer loss. Together, these findings establish Ringer as a key regulator of mitochondrial bioenergetics and reveal CI instability as a potential mechanism underlying PD-associated mitochondrial dysfunction, providing a robust and translationally meaningful framework for future therapeutic exploration.

neuroscience↗

Protocol for using an ELISA assay to detect total α-synuclein levels in Drosophila melanogaster lines expressing human α-synuclein point mutations

In Parkinsons disease (PD), aggregation of alpha-synuclein (-syn) contributes to neuronal dysfunction and death, particularly in dopaminergic neurons, driving disease progression. Several pathogenic point mutations have been identified in human -syn such as A30P, E46K, H50Q, G51D, A53T and A53E that have been associated with PD. In this study, a sandwich ELISA assay was developed to quantify total -syn levels in various Drosophila melanogaster genotypes expressing A30P, E46K, G51D and A53T. Using this approach, we compared -syn levels across wild-type (WT) and mutant forms of the protein. The E46K and A53T mutations exhibited higher total -syn concentrations compared to WT and the G51D mutation. In addition to characterizing mutationdependent differences in -syn levels, this assay was applied to evaluate smallmolecule modulators that inhibit -syn aggregation. These findings demonstrate that the ELISA-based approach provides a useful platform for quantifying -syn and assessing potential therapeutic compounds targeting syn pathology.

neuroscience↗