4.6 Article

The mitochondrial protein Sideroflexin 3 (SFXN3) influences neurodegeneration pathways in vivo

期刊

FEBS JOURNAL
卷 289, 期 13, 页码 3894-3914

出版社

WILEY
DOI: 10.1111/febs.16377

关键词

mitochondria; neurodegeneration; Parkinson's disease; Sideroflexin 3; synapse

资金

  1. MRC (Precision Medicine PhD Programme)
  2. Royal Society [WM120111]
  3. UKRI-BBSRC [BB/R009031/1, BB/T003804/1]
  4. BBRSC ISP
  5. Euan MacDonald Centre
  6. MRC Confidence in Concept (CiC) award
  7. BBSRC [BB/R009031/1, BB/T003804/1] Funding Source: UKRI
  8. Royal Society [WM120111] Funding Source: Royal Society

向作者/读者索取更多资源

Synapses are a primary pathological target in neurodegenerative diseases, and SFXN3 has been found to have an impact on neurodegeneration and cell death, potentially playing a significant role in regulating neurodegeneration pathways.
Synapses are a primary pathological target in neurodegenerative diseases. Identifying therapeutic targets at the synapse could delay progression of numerous conditions. The mitochondrial protein SFXN3 is a neuronally enriched protein expressed in synaptic terminals and regulated by key synaptic proteins, including alpha-synuclein. We first show that SFXN3 uses the carrier import pathway to insert into the inner mitochondrial membrane. Using high-resolution proteomics on Sfxn3-KO mice synapses, we then demonstrate that SFXN3 influences proteins and pathways associated with neurodegeneration and cell death (including CSP alpha and Caspase-3), as well as neurological conditions (including Parkinson's disease and Alzheimer's disease). Overexpression of SFXN3 orthologues in Drosophila models of Parkinson's disease significantly reduced dopaminergic neuron loss. In contrast, the loss of SFXN3 was insufficient to trigger neurodegeneration in mice, indicating an anti- rather than pro-neurodegeneration role for SFXN3. Taken together, these results suggest a potential role for SFXN3 in the regulation of neurodegeneration pathways.

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