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Published on: May 19, 2023
Adipocyte Septin-7 attenuates obesogenic adipogenesis and promotes lipolysis to prevent obesity
Liran Xu1, Chao Yang2, Kaidan Pang1
1Department of Pharmacology, School of Basic Medical Sciences, Xi'an Jiaotong University, Xi'an, Shaanxi, China.
Objectives:
The white adipose tissue (WAT) expansion plays a significant role in the development of obesity. Cytoskeletal remodeling directly impacts adipogenic program, however, the precise mechanism remains poorly understood. Here, we identified a crucial role of Septin-7 (SEPT7), a cytoskeleton component, in the regulation of diet-induced processes of adipogenesis, lipogenesis, and lipolysis in WAT.
Methods:
A high-fat diet (HFD)-induced obesity model was constructed using mice with inducible adipocyte-specific SEPT7 deficiency. The impact of SEPT7 on adipocyte morphology, cell number and metabolism capacity were evaluated with immunofluorescence, isoproterenol induced lipolysis assay, glucose tolerance test and insulin tolerance test. Adipocyte mTmG reporter line was established to trace in vivo adipogenesis. The preadipocyte 3T3-L1 cell was induced for exploring role of SEPT7 in adipocyte differentiation. qRT-PCR and Western-blot were used to investigate the expression of PPARγ, C/EBPα, and HSL in 3T3-L1 cell with siRNA-mediated SEPT7 knockdown.
Results:
SEPT7 expression was greatly induced in obesogenic human and murine adipocytes. Mice lacking SEPT7 in mature white adipocytes demonstrated defective differentiation of preadipocyte into mature adipocytes when fed HFD resulting in larger adipocytes, increased WAT inflammation and reduced lipolysis, which leading to increased WAT mass, liver fat accumulation and impaired glucose tolerance. Mechanistically, we identified SEPT7 restrains store-operated Ca2+ entry (SOCE) and regulates adipocyte adipogenesis and lipolysis by targeting PPARγ, C/EBPα and HSL.
Conclusions:
We demonstrated that SEPT7 negatively regulates adipogenesis while promotes lipolysis and its repression drives WAT expansion and impaired metabolic health.
Insights
Septin-7 (SEPT7) negatively regulates white adipose tissue expansion by controlling adipogenesis and lipolysis. Its deficiency in mice leads to larger adipocytes, inflammation, and impaired glucose tolerance, highlighting SEPT7
Area of Science:
- Cell Biology
- Metabolic Research
- Obesity Studies
Background:
- White adipose tissue (WAT) expansion is a key driver of obesity.
- Cytoskeletal remodeling influences adipogenesis, but mechanisms are unclear.
- Septin-7 (SEPT7) is a cytoskeleton component with an unknown role in WAT metabolism.
Purpose of the Study:
- To investigate the role of Septin-7 (SEPT7) in regulating diet-induced adipogenesis, lipogenesis, and lipolysis in white adipose tissue (WAT).
- To elucidate the molecular mechanisms by which SEPT7 impacts adipocyte function and metabolic health.
Main Methods:
- Constructed a high-fat diet (HFD)-induced obesity mouse model with inducible adipocyte-specific SEPT7 deficiency.
- Assessed adipocyte morphology, cell number, and metabolic capacity using immunofluorescence, lipolysis assays, glucose, and insulin tolerance tests.
- Utilized 3T3-L1 cells and qRT-PCR/Western-blot to explore SEPT7's role in adipocyte differentiation and target gene expression (PPARγ, C/EBPα, HSL).
Main Results:
- SEPT7 expression is upregulated in obesogenic human and murine adipocytes.
- SEPT7 deficiency in mature adipocytes impaired preadipocyte differentiation, leading to larger adipocytes, increased WAT inflammation, and reduced lipolysis under HFD.
- SEPT7 deficiency resulted in increased WAT mass, liver fat accumulation, and impaired glucose tolerance.
- Mechanistically, SEPT7 was found to restrain store-operated Ca2+ entry (SOCE) and regulate adipocyte function by targeting PPARγ, C/EBPα, and HSL.
Conclusions:
- SEPT7 negatively regulates adipogenesis and promotes lipolysis in WAT.
- SEPT7 repression drives WAT expansion, contributing to obesity and impaired metabolic health.
- Targeting SEPT7 may offer a therapeutic strategy for metabolic disorders.
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