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Updated: Nov 2, 2025

Immunometabolic Circuits in Infection for Advancing Host Directed Therapies
Published on: September 13, 2024
Hyperlipidemic hypersensitivity to lethal microbial inflammation and its reversal by selective targeting of nuclear
Yan Liu1,2, Jozef Zienkiewicz1,2, Kelli L Boyd3
1Division of Allergy, Pulmonary and Critical Care Medicine, Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN, USA.
Abstract:
Hyperlipidemia, the hallmark of Metabolic Syndrome that afflicts millions of people worldwide, exacerbates life-threatening infections. We present a new evidence for the mechanism of hyperlipidemic hypersensitivity to microbial inflammation caused by pathogen-derived inducer, LPS. We demonstrate that hyperlipidemic animals succumbed to a non-lethal dose of LPS whereas normolipidemic controls survived. Strikingly, survival of hyperlipidemic animals was restored when the nuclear import of stress-responsive transcription factors (SRTFs), Sterol Regulatory Element-Binding Proteins (SREBPs), and Carbohydrate-Responsive Element-Binding Proteins (ChREBPs) was impeded by targeting the nuclear transport checkpoint with cell-penetrating, biselective nuclear transport modifier (NTM) peptide. Furthermore, the burst of proinflammatory cytokines and chemokines, microvascular endothelial injury in the liver, lungs, heart, and kidneys, and trafficking of inflammatory cells were also suppressed. To dissect the role of nuclear transport signaling pathways we designed and developed importin-selective NTM peptides. Selective targeting of the importin α5, ferrying SRTFs and ChREBPs, protected 70-100% hyperlipidemic animals. Targeting importin β1, that transports SREBPs, was only effective after 3-week treatment that lowered blood triglycerides, cholesterol, glucose, and averted fatty liver. Thus, the mechanism of hyperlipidemic hypersensitivity to lethal microbial inflammation depends on metabolic and proinflammatory transcription factors mobilization, which can be counteracted by targeting the nuclear transport checkpoint.
Insights
Hyperlipidemia increases infection severity. Blocking nuclear transport of key transcription factors in hyperlipidemic animals restored survival and reduced inflammation, revealing a novel therapeutic target.
Area of Science:
- Immunology
- Metabolic Disorders
- Molecular Biology
Background:
- Hyperlipidemia, a key feature of Metabolic Syndrome, worsens infections.
- Pathogen-induced inflammation, like that from lipopolysaccharide (LPS), is particularly dangerous in hyperlipidemic individuals.
Purpose of the Study:
- To investigate the mechanism behind hyperlipidemic hypersensitivity to microbial inflammation.
- To identify therapeutic targets for mitigating severe infections in hyperlipidemic patients.
Main Methods:
- Hyperlipidemic and normolipidemic animal models were exposed to LPS.
- Nuclear import of stress-responsive transcription factors (SRTFs) was blocked using a nuclear transport modifier (NTM) peptide.
- Importin-selective NTM peptides were developed to target specific transport pathways.
Main Results:
- Hyperlipidemic animals died from a non-lethal LPS dose, while controls survived.
- Targeting nuclear import of SRTFs (Sterol Regulatory Element-Binding Proteins and Carbohydrate-Responsive Element-Binding Proteins) with NTM peptides restored survival in hyperlipidemic animals.
- Proinflammatory cytokine/chemokine bursts, endothelial injury, and inflammatory cell trafficking were suppressed by NTM treatment.
Conclusions:
- Hyperlipidemic hypersensitivity to microbial inflammation is driven by the mobilization of metabolic and proinflammatory transcription factors.
- Targeting the nuclear transport checkpoint offers a promising strategy to counteract severe infections in hyperlipidemic conditions.
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