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Randomized Controlled Trial
. 2012 Aug;10(4):312-7.
doi: 10.1089/met.2011.0121. Epub 2012 May 31.

Regulation of small ubiquitin-like modifier-1, nuclear receptor coreceptor, histone deacetylase 3, and peroxisome proliferator-activated receptor-γ in human adipose tissue

Affiliations
Randomized Controlled Trial

Regulation of small ubiquitin-like modifier-1, nuclear receptor coreceptor, histone deacetylase 3, and peroxisome proliferator-activated receptor-γ in human adipose tissue

Brian S Finlin et al. Metab Syndr Relat Disord. 2012 Aug.

Abstract

Background: This study investigated the regulation of peroxisome proliferator-activated receptor-γ (PPARγ), the histone deacetylase 3 (HDAC3)-nuclear receptor coreceptor (NCoR) complex (a corepressor of transcription used by PPARγ), and small ubiquitin-like modifier-1 (SUMO-1) (a posttranslational modifier of PPARγ) in human adipose tissue and both adipocyte and macrophage cell lines. The objective was to determine whether there were alterations in the human adipose tissue gene expression levels of PPARγ, HDAC3, NCoR, and SUMO-1 associated either with obesity or with treatment of impaired glucose tolerance (IGT) subjects with insulin-sensitizing medications.

Methods: We obtained subcutaneous adipose tissue biopsies from 86 subjects with a wide range of body mass index (BMI) and insulin sensitivity (S(I)). Additionally, adipose tissue biopsies were obtained from a randomized subgroup of IGT subjects before and after 10 weeks of treatment with either pioglitazone or metformin.

Results: The adipose mRNA levels of PPARγ, NCoR, HDAC3, and SUMO-1 correlated strongly with each other (P<0.0001); however, SUMO-1, NCoR, and HDAC3 gene expression were not significantly associated with BMI or S(I). Pioglitazone increased SUMO-1 expression by 23% (P<0.002) in adipose tissue and an adipocyte cell line (P<0.05), but not in macrophages. Small interfering RNA (siRNA)-mediated knockdown of SUMO-1 decreased PPARγ, HDAC3, and NCoR in THP-1 cells and increased tumor necrosis factor-α (TNF-α) induction in response to lipopolysaccharide (LPS).

Conclusions: These results suggest that the coordinate regulation of SUMO-1, PPARγ1/2, HDAC3, and NCoR may be more tightly controlled in macrophages than in adipocytes in human adipose and that these modulators of PPARγ activity may be particularly important in the negative regulation of macrophage-mediated adipose inflammation by pioglitazone.

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Figures

FIG. 1.
FIG. 1.
Analysis of gene expression in human adipose biopsies and cell lines. (A) Correlation of histone deacetylase-3 (HDAC3) and nuclear receptor corepressor (NCoR) mRNA expression in 84 subjects. (B) Effect of pioglitazone and metformin treatment on the expression level of small ubiquitin-like modifier-1 (SUMO-1) mRNA in human whole adipose tissue. Open columns indicate pretreatment and shaded columns indicate posttreatment of subjects with the indicated drugs. The data are presented as means±standard error (SE) (n=18 for pioglitazone; n=13 for metformin). (*) Compare pretreatment and posttreatment with pioglitazone (P<0.05). (C) Effect of pioglitazone treatment on the expression level of SUMO-1 in the human adipocyte Simpson–Golabi–Behmel syndrome (SGBS) cell line. Differentiated SGBS cells were treated with or without pioglitazone as indicated. The data are presented as means±SE (n=3). (*) Compare pioglitazone treatment with control (P<0.05).
FIG. 2.
FIG. 2.
Coordinate regulation of small ubiquitin-like modifier-1 (SUMO-1), peroxisome proliferator-activated receptor-γ (PPARγ), histone deacetylase-3 (HDAC3), and nuclear receptor corepressor (NCoR) in THP-1 cells. (A–F) THP-1 cells were transfected with the indicated small interfering RNA (siRNA), and the mRNA expression of the indicated gene was measured with real-time reverse transcriptase (RT)-PCR. (G) THP-1 cells (three replicates) were transfected with the indicated siRNA, and the protein level of the indicated gene was measured by immunoblotting. (H–J) Protein levels were quantified and normalized to actin. The data are presented as means±standard error (SE) (n=3). (*) Compare SUMO-1 siRNA treatment with control (P<0.05).
FIG. 3.
FIG. 3.
Effect of small interfering RNA (siRNA)-mediated small ubiquitin-like modifier-1 (SUMO-1) knockdown on the THP-1 cell inflammatory response. THP-1 cells were transfected with the indicated siRNA, treated with or without pioglitazone (3 μM), treated with or without 100 ng/mL lipopolysaccharide (LPS) for 6 h, and the mRNA expression of tumor necrosis factor-α (TNF-α) was measured with real-time reverse-transcriptase (RT)-PCR. The data are presented as means±standard error (SE) (n=4). (†) Compare LPS treatment with no LPS treatment (P<0.05); (††) compare LPS treatment with LPS and pioglitazone treatment (P<0.05); (*) compare LPS treatment with no LPS treatment (P<0.05); (**) compare LPS treatment with LPS and pioglitazone treatment (P<0.05). The overall effect of SUMO-1 knockdown on TNF-α induction was determined by three-way analysis of variance (ANOVA) (P<0.05).

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