AI Article Synopsis

  • Variants of mitochondrial DNA (mtDNA) are linked to the risk of developing Parkinson's disease (PD), but the mechanisms are not fully understood.
  • Cybrid models with different mtDNA genotypes were tested for how resistant they are to a PD-simulating treatment, identifying the W3 mtDNA haplogroup as the most resistant.
  • Transcriptome profiling and molecular studies showed that GADD34, a protein linked to mitochondrial stress response, is crucial for this resistance, suggesting that targeting GADD34 could be a potential therapeutic strategy for PD.

Article Abstract

Variants of mitochondrial DNA (mtDNA) have been identified as risk factors for the development of Parkinson's disease (PD). However, the underlying pathogenetic mechanisms remain unclear. Cybrid models carrying various genotypes of mtDNA variants were tested for resistance to PD-simulating MPP treatment. The most resistant line was selected for transcriptome profiling, revealing specific genes potentially influencing the resistant characteristic. We then conducted protein validation and molecular biological studies to validate the related pathways as the influential factor. Cybrids carrying the W3 mtDNA haplogroup demonstrated the most resistance to the MPP treatment. In the transcriptome study, was identified, while further study noted elevated expressions of the coding protein GADD34 across all cybrids. In the study of GADD34-related mitochondrial unfolding protein response (mtUPR), we found that canonical mtUPR, launched by the phosphate eIF2a, is involved in the resistant characteristic of specific mtDNA to MPP treatment. Our study suggests that a lower expression of GADD34 in the late phase of mtUPR may prolong the mtUPR process, thereby benefitting protein homeostasis and facilitating cellular resistance to PD development. We herein demonstrate that GADD34 plays an important role in PD development and should be further investigated as a target for the development of therapies for PD.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11049488PMC
http://dx.doi.org/10.3390/cells13080694DOI Listing

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