TOMM40 Knockdown in Macrophages Inhibits Oxidized LDL-induced NLRP3 Activation and Promotes LXR-β Mediated Cholesterol Transporter Gene Expression

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The paper investigates how knockdown of TOMM40, a mitochondrial importer component, affects NLRP3 inflammasome activation in monocyte-derived macrophages exposed to oxidized LDL. Using THP-1 macrophages, the authors report that TOMM40 knockdown inhibits oxLDL-induced NLRP3 activation and increases liver X receptor (LXR) activity, linking this to prior findings that LXR agonists suppress NLRP3. They further show that TOMM40 knockdown upregulates LXR-mediated cholesterol efflux genes ABCA1 and ABCG1, consistent with enhanced reverse cholesterol transport. A key caveat is that the experiments are performed in THP-1 cells (an in vitro macrophage model), rather than in vivo. This paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Atherogenesis has been shown in mice to be dependent on activation of the NLRP3 inflammasome, a cytosolic innate immune sensor activated by a broad range of pathogen and damage associated molecular patterns, including oxidized LDL (oxLDL) in atherosclerosis. Previous work from our group has shown that knockdown of Translocase of Outer Mitochondrial Membrane 40 ( TOMM40), which encodes a component of the mitochondrial importer TOM complex, increases expression and activity of the nuclear receptor-family transcription factor, liver X receptor (LXR) in hepatocytes. As LXR agonists have been shown to inhibit NLRP3 activation, we confirmed the prediction that TOMM40 knockdown has this effect in THP-1 monocyte-derived macrophages. Further, we demonstrated that TOMM40 KD upregulates LXR-mediated macrophage expression of the ABCA1 and ABCG1 genes which encode transporters that promote cellular cholesterol efflux, the first step in reverse cholesterol transport to the liver. Taken together, these findings identify a novel mechanism whereby increased LXR activity induced by suppression of TOMM40 expression in macrophages may retard atherogenesis both by inhibiting inflammation and promoting reverse cholesterol transport.
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Abstract Atherogenesis has been shown in mice to be dependent on activation of the NLRP3 inflammasome, a cytosolic innate immune sensor activated by a broad range of pathogen and damage associated molecular patterns, including oxidized LDL (oxLDL) in atherosclerosis. Previous work from our group has shown that knockdown of Translocase of Outer Mitochondrial Membrane 40 (TOMM40), which encodes a component of the mitochondrial importer TOM complex, increases expression and activity of the nuclear receptor-family transcription factor, liver X receptor (LXR) in hepatocytes. As LXR agonists have been shown to inhibit NLRP3 activation, we confirmed the prediction that TOMM40 knockdown has this effect in THP-1 monocyte-derived macrophages. Further, we demonstrated that TOMM40 KD upregulates LXR-mediated macrophage expression of the ABCA1 and ABCG1 genes which encode transporters that promote cellular cholesterol efflux, the first step in reverse cholesterol transport to the liver. Taken together, these findings identify a novel mechanism whereby increased LXR activity induced by suppression of TOMM40 expression in macrophages may retard atherogenesis both by inhibiting inflammation and promoting reverse cholesterol transport. Competing Interest Statement The authors have declared no competing interest.

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last seen: 2026-05-20T01:45:00.602351+00:00