Component

OMA1 knockdown in human cultured cells

Study-specific role and exposure are specified on each linked claim.

1 recorded relationships. Experimental role, claim status and evidence remain attached to each record.

How nutrients influence it

Every nutrient with a recorded effect on this component, credited to the nutrient that acted rather than the chapter that recorded it. Open a nutrient to see the findings and the conditions they were measured under.

How nutrients reach it in more than one step

Chains of two or more recorded steps that end here, grouped by the nutrient they start from. Each step is a separate finding, so a chain is a route a mechanism could take, not proof that it does.

Tracing routes…

What it does

Every recorded relationship this component is part of, grouped by its role. Plain wording comes first; the technical statement follows.

Recorded relationships

What it acts on

  1. OMA1 knockdown did not suppress the tested iron-chelation-induced ISR.

    Experimental context and source evidence
    access_level
    selected_indexed_full_text_passages
    evidence_cache
    artifacts/discovery-research/round2-sources/primary-mechanism-passages.json; SHA256 81c0207494f0b2a22fd0af0d70528a5114dfd74367dd99f967f4ada68c53e8c3
    experimental_model
    HEK293T; HeLa
    exposure
    DFO/DFP; exact panel dose/time unresolved
    limitations
    Selected indexed primary full-text passages reviewed; supplements not independently inspected in this round. These records do not demonstrate iron-chelation rescue of SLC25A39 loss, clinical benefit, or transfer to pulmonary endothelium.
    organism
    Human cultured cells; mouse xenograft host only for colonization endpoint
    plain_language
    OMA1 knockdown did not suppress the tested iron-chelation-induced ISR.
    primary_locator
    https://pmc.ncbi.nlm.nih.gov/articles/PMC10329284/ Figure 5C/D
    primary_references
    https://doi.org/10.1016/j.molcel.2023.05.031

    DELE1 bridge: iron sensing and mitochondrial-glutathione-dependent stress signaling · lines 91–100

    Targeted primary-literature curation; selected indexed full-text passages, 2026-09-20. · supports · HEK293T; HeLa · source_derived_draft · unverified_draft

    OMA1 knockdown did not suppress the tested iron-chelation-induced ISR. primary_references: https://doi.org/10.1016/j.molcel.2023.05.031 primary_locator: https://pmc.ncbi.nlm.nih.gov/articles/PMC10329284/ Figure 5C/D evidence_cache: artifacts/discovery-research/round2-sources/primary-mechanism-passages.json; SHA256 81c0207494f0b2a22fd0af0d70528a5114dfd74367dd99f967f4ada68c53e8c3 access_level: selected_indexed_full_text_passages experimental_model: HEK293T; HeLa organism: Human cultured cells; mouse xenograft host only for colonization endpoint exposure: DFO/DFP; exact panel dose/time unresolved limitations: Selected indexed primary full-text passages reviewed; supplements not independently inspected in this round. These records do not demonstrate iron-chelation rescue of SLC25A39 loss, clinical benefit, or transfer to pulmonary endothelium. plain_language: OMA1 knockdown did not suppress the tested iron-chelation-induced ISR.
    Complete structured claim and evidence

In the sources

Preserved passages that mention this component, quoted exactly. Open one to read it in context.

    This is a research prototype built from draft material. It is not medical advice, and its statements still await verification against the original studies.

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