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Updated: Jun 16, 2026

An Integrated Approach for Microprotein Identification and Sequence Analysis
Published on: July 12, 2022
Molecular characterization and functional analysis of porcine macrophage migration inhibitory factor (MIF) gene
Abstract:
Originally identified as a cytokine that inhibits the migration of macrophages from capillaries, MIF has now emerged to be a multifunctional factor involved in immune response, glucose and lipid metabolism. We report here the molecular characterization of porcine MIF gene, which resides on chromosome 14q21.3 and encodes 114 amino acids. Porcine MIF mRNA was found to be highly expressed in stomach, to a lesser extent in spleen, and at the lowest levels in skeletal muscle and heart. To gain further insight into the functional regulation of MIF, we cloned the porcine MIF promoter and verified its functionality using luciferase reporter assay. In NIH 3T3 cells, the endogenous MIF mRNA level was up-regulated by rosiglitazone treatment in a dose-dependent manner, which was accompanied by a concurrent increase in peroxisome proliferator-activated receptor (PPAR)gamma2 transcription. Over-expression of porcine PPARgamma2 in NIH 3T3 cells could also up-regulate the transcription of MIF in the absence of rosiglitazone treatment. These observations are consistent with the bioinformatic analysis that reveals two potential PPAR binding sites within the MIF promoter. Additionally, the over-expression of resistin, a factor considered to be a link between inflammation and metabolic signals, could remarkably down-regulate the transcription of MIF in NIH 3T3 cells. Taken together, we proposed that the transcription of MIF is induced by activation of PPARgamma2 and inhibited by excessive resistin.
Insights
Macrophage migration inhibitory factor (MIF) gene transcription is regulated by peroxisome proliferator-activated receptor gamma2 (PPARγ2) and resistin. PPARγ2 activation induces MIF, while resistin inhibits it, impacting immune and metabolic functions.
Area of Science:
- Molecular Biology
- Immunology
- Metabolism
Background:
- Macrophage migration inhibitory factor (MIF) is a multifunctional cytokine involved in immune response and metabolic regulation.
- Understanding the regulation of MIF is crucial for comprehending its role in various physiological processes.
Purpose of the Study:
- To characterize the porcine MIF gene and elucidate its transcriptional regulation.
- To investigate the roles of peroxisome proliferator-activated receptor gamma2 (PPARγ2) and resistin in regulating MIF transcription.
Main Methods:
- Molecular characterization of the porcine MIF gene, including localization to chromosome 14q21.3.
- Cloning and functional verification of the porcine MIF promoter using luciferase reporter assays in NIH 3T3 cells.
- Investigating the effects of rosiglitazone, PPARγ2, and resistin on MIF mRNA levels and promoter activity.
Main Results:
- Porcine MIF mRNA is highly expressed in the stomach and spleen.
- Rosiglitazone treatment and PPARγ2 overexpression up-regulated MIF transcription, indicating potential PPAR binding sites in the MIF promoter.
- Resistin overexpression significantly down-regulated MIF transcription.
Conclusions:
- Porcine MIF gene transcription is positively regulated by PPARγ2 activation.
- Resistin acts as an inhibitor of MIF transcription.
- These findings provide insights into the complex regulatory network of MIF in immune and metabolic pathways.

