SIRT6-COX6A1 axis mediates prenatal 6:2 FTOH-induced neuronal damage via mitochondrial dysfunction

Prenatal exposure to 6:2 fluorotelomer alcohol (6:2 FTOH), an emerging environmental contaminant, raises concerns regarding developmental neurotoxicity, but the underlying mechanisms remain unclear. Combining network toxicology and transcriptomics in a prenatal mouse exposure model, we discovered that 6:2 FTOH suppressed silent information regulator 6 (SIRT6) expression in the developing brain, leading to hyperacetylation and autophagic degradation of cytochrome c oxidase subunit 6A1 (COX6A1), an essential element of the mitochondrial electron transport chain. This cascade reduced COX6A1 mitochondrial content, triggered mitochondrial dysfunction, and ultimately reduced neurotransmitter content. Molecular docking predicted favorable binding affinities between 6:2 FTOH and both SIRT6 and COX6A1. Importantly, restoring SIRT6 or COX6A1 expression in vitro reversed 6:2 FTOH-induced neurotoxicity. These findings reveal a novel mechanism where SIRT6-mediated deacetylation preserves COX6A1 stability and mitochondrial function, and demonstrate that an environmental contaminant can hijack this pathway to inflict neuronal damage. The SIRT6-COX6A1 axis represents a potential therapeutic target for neuronal damage induced by environmental contaminant.

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Publication Details

Journal
Ecotoxicology and Environmental Safety
Published
2026-09-30
DOI
https://doi.org/10.1016/j.ecoenv.2026.120864
Primary Topic
Per- and polyfluoroalkyl substances research
Type
article
Field-Weighted Citation Impact
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article

SIRT6-COX6A1 axis mediates prenatal 6:2 FTOH-induced neuronal damage via mitochondrial dysfunction

Jie Ding, 甘卫东, Dongmei Li, Yunhui Xia et al.
Ecotoxicology and Environmental Safety
Per- and polyfluoroalkyl substances research
article

SIRT6-COX6A1 axis mediates prenatal 6:2 FTOH-induced neuronal damage via mitochondrial dysfunction

Jie Ding, 甘卫东, Dongmei Li, Yunhui Xia, Wenjun Tai, Ping Hu
article en

Abstract

Prenatal exposure to 6:2 fluorotelomer alcohol (6:2 FTOH), an emerging environmental contaminant, raises concerns regarding developmental neurotoxicity, but the underlying mechanisms remain unclear. Combining network toxicology and transcriptomics in a prenatal mouse exposure model, we discovered that 6:2 FTOH suppressed silent information regulator 6 (SIRT6) expression in the developing brain, leading to hyperacetylation and autophagic degradation of cytochrome c oxidase subunit 6A1 (COX6A1), an essential element of the mitochondrial electron transport chain. This cascade reduced COX6A1 mitochondrial content, triggered mitochondrial dysfunction, and ultimately reduced neurotransmitter content. Molecular docking predicted favorable binding affinities between 6:2 FTOH and both SIRT6 and COX6A1. Importantly, restoring SIRT6 or COX6A1 expression in vitro reversed 6:2 FTOH-induced neurotoxicity. These findings reveal a novel mechanism where SIRT6-mediated deacetylation preserves COX6A1 stability and mitochondrial function, and demonstrate that an environmental contaminant can hijack this pathway to inflict neuronal damage. The SIRT6-COX6A1 axis represents a potential therapeutic target for neuronal damage induced by environmental contaminant.

Ecotoxicology and Environmental SafetyVol. 324
Nanjing Maternity and Child Health Care Hospital (CN), Nanjing Drum Tower Hospital (CN), State Key Laboratory of Analytical Chemistry for Life Science (CN), Nanjing Medical University (CN), Nanjing University (CN)
Openalex Percentile: Top 19%
Per- and polyfluoroalkyl substances research
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SIRT6-COX6A1 axis mediates prenatal 6:2 FTOH-induced neuronal damage via mitochondrial dysfunction — Jie Ding, 甘卫东, et al. · Ecotoxicology and Environmental Safety (2026) | TGRS Research Map | TGRS