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Shikonin changes the lipopolysaccharide-induced expression of inflammation-related genes in macrophages
Lucia Satiko Yoshida1, Tomohito Kakegawa2, Yasukatsu Yuda1
1Research Institute of Pharmaceutical Sciences, Musashino University, 1-1-20 Shinmachi, Nishitokyo, 202-8585, Japan.
Abstract:
We aimed to find candidate molecules possibly involved in the anti-inflammatory activity of shikonin (active compound of "Shikon") by analyzing its effects on gene expression of lipopolysaccharide (LPS)-treated THP-1 macrophages. Polysome-associated mRNAs (those expected to be under translation: translatome) from cells treated with LPS alone (LPS: 5 µg/mL), shikonin alone (S: 100 nM), or LPS plus shikonin (LPS&S) for 3 h were analyzed by DNA microarray followed by detection of enriched pathways/gene ontologies using the tools of the STRING database. Candidate genes in enriched pathways in the comparison of LPS&S cells vs. LPS cells were analyzed by reverse-transcription quantitative real-time PCR (RT-qPCR; 1, 2, and 3 h). DNA microarray showed shikonin significantly influences gene expression. Gene expression changes between LPS&S cells and LPS cells were compared to detect relevant proteins and/or mRNAs underlying its anti-inflammatory effects: shikonin downregulated pathways which were upregulated in LPS cells, for example, 'innate immune response'. Within changed pathways, three genes were selected for RT-qPCR analyses as key candidates influencing inflammatory responses: CYBA (component of the superoxide-generating Nox2 enzyme), GSK3B (controller of cell responses after toll-like receptor stimulation), and EIF4E (a key factor of the eukaryotic translation initiation factor 4F complex that regulates abundance of other proteins involved in immune functions). All three mRNAs were decreased at 2 h, and CYBA continued low at 3 h relative to LPS cells. Given that shikonin decreased the expression of CYBA gene of Nox2, in addition to the direct inhibition of the Nox2 activity that we have previously shown, it is suggested that one of its anti-inflammatory mechanisms could be attenuation of oxidative stress.
Insights
Shikonin, a compound from "Shikon," reduces inflammatory gene expression in macrophages. It downregulates pathways like the innate immune response and key genes, potentially by reducing oxidative stress via the Nox2 enzyme.
Area of Science:
- Immunology and Molecular Biology
- Pharmacology and Natural Products
Background:
- Shikonin, derived from "Shikon," possesses known anti-inflammatory properties.
- Lipopolysaccharide (LPS) is a potent inducer of inflammatory responses in macrophages.
- Understanding shikonin's molecular targets is crucial for elucidating its therapeutic mechanisms.
Purpose of the Study:
- To identify candidate molecules mediating the anti-inflammatory effects of shikonin.
- To analyze shikonin's impact on the translatome of LPS-stimulated THP-1 macrophages.
- To investigate shikonin's influence on gene expression pathways related to inflammation.
Main Methods:
- Gene expression analysis using DNA microarray on LPS-treated THP-1 macrophages.
- Analysis of polysome-associated mRNAs (translatome) under various treatment conditions (LPS, shikonin, LPS+shikonin).
- Pathway and gene ontology enrichment analysis using the STRING database.
- Validation of key candidate genes (CYBA, GSK3B, EIF4E) using reverse-transcription quantitative real-time PCR (RT-qPCR).
Main Results:
- DNA microarray revealed significant gene expression modulation by shikonin.
- Shikonin downregulated pathways upregulated by LPS, including the 'innate immune response'.
- RT-qPCR confirmed decreased expression of CYBA, GSK3B, and EIF4E mRNAs at 2 hours post-treatment.
- CYBA mRNA levels remained low at 3 hours, suggesting sustained inhibition.
Conclusions:
- Shikonin significantly alters the translatome of LPS-stimulated macrophages.
- Downregulation of CYBA, a component of the superoxide-generating Nox2 enzyme, suggests a role in shikonin's anti-inflammatory action.
- Shikonin's anti-inflammatory mechanism may involve the attenuation of oxidative stress through inhibition of Nox2 activity and expression.
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