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Published on: May 19, 2023
Tm7sf2 gene promotes adipocyte differentiation of mouse embryonic fibroblasts and improves insulin sensitivity
Leonardo Gatticchi1, Maya Petricciuolo1, Paolo Scarpelli1
1Department of Experimental Medicine, Section of Physiology and Biochemistry, University of Perugia, 06132 Perugia, Italy.
Abstract:
Adipogenesis is a finely orchestrated program involving a transcriptional cascade coordinated by CEBP and PPAR family members and by hormonally induced signaling pathways. Alterations in any of these factors result into impaired formation of fully differentiated adipocytes. Tm7sf2 gene encodes for a Δ(14)-sterol reductase primarily involved in cholesterol biosynthesis. Furthermore, TM7SF2 modulates the expression of the master gene of adipogenesis PPARγ, suggesting a role in the regulation of adipose tissue homeostasis. We investigated the differentiation of Tm7sf2-/- MEFs into adipocytes, compared to Tm7sf2+/+ MEFs. Tm7sf2 expression was increased at late stage of differentiation in wild type cells, while Tm7sf2-/- MEFs exhibited a reduced capacity to differentiate into mature adipocytes. Indeed, Tm7sf2-/- MEFs had lower neutral lipid accumulation and reduced expression of adipogenic regulators. At early stage, the reduction in C/EBPβ expression impaired mitotic clonal expansion, which is needed by preadipocytes for adipogenesis induction. At late stage, the expression and activity of C/EBPα and PPARγ were inhibited in Tm7sf2-/- cells, leading to the reduced expression of adipocyte genes like Srebp-1c, Fasn, Scd-1, Adipoq, Fabp4, and Glut4. Loss of the acquisition of adipocyte phenotype was accompanied by a reduction in the levels of Irs1, and phosphorylated Akt and ERK1/2, indicating a blunted insulin signaling in differentiating Tm7sf2-/- cells. Moreover, throughout the differentiation process, increased expression of the antiadipogenic Mmp3 was observed in MEFs lacking Tm7sf2. These findings indicate Tm7sf2 as a novel factor influencing adipocyte differentiation that could be relevant to adipose tissue development and maintenance of metabolic health.
Insights
The Tm7sf2 gene is crucial for adipocyte differentiation, as its absence impairs lipid accumulation and reduces key adipogenic regulators, impacting adipose tissue homeostasis and metabolic health.
Area of Science:
- Cell Biology
- Metabolic Regulation
- Gene Expression
Background:
- Adipogenesis is a complex process regulated by transcription factors like CEBP and PPAR, and hormonal pathways.
- The Tm7sf2 gene, encoding a Δ(14)-sterol reductase, is implicated in cholesterol biosynthesis and may influence adipose tissue homeostasis.
- Dysregulation of adipogenesis can lead to impaired formation of mature adipocytes.
Purpose of the Study:
- To investigate the role of Tm7sf2 in adipocyte differentiation.
- To compare adipogenic capacity between Tm7sf2 knockout (Tm7sf2-/-) and wild-type (Tm7sf2+/+) mouse embryonic fibroblasts (MEFs).
Main Methods:
- Comparative analysis of adipocyte differentiation in Tm7sf2-/- and Tm7sf2+/+ MEFs.
- Assessment of neutral lipid accumulation, expression of adipogenic regulators (C/EBPβ, C/EBPα, PPARγ), and downstream adipocyte genes.
- Evaluation of insulin signaling pathway components (Irs1, Akt, ERK1/2) and anti-adipogenic factors (Mmp3).
Main Results:
- Tm7sf2-/- MEFs showed reduced differentiation capacity, with lower neutral lipid accumulation and impaired expression of adipogenic regulators.
- Early-stage differentiation was hindered by reduced C/EBPβ, impacting mitotic clonal expansion.
- Late-stage differentiation exhibited inhibited C/EBPα and PPARγ activity, leading to decreased expression of key adipocyte genes and blunted insulin signaling.
- MEFs lacking Tm7sf2 displayed increased Mmp3 expression, an anti-adipogenic factor.
Conclusions:
- Tm7sf2 is a novel factor essential for effective adipocyte differentiation.
- Loss of Tm7sf2 function disrupts transcriptional cascades and insulin signaling crucial for adipogenesis.
- Tm7sf2 plays a significant role in adipose tissue development and the maintenance of metabolic health.

