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Publication : Feedback regulation of Arid5a and Ppar-γ2 maintains adipose tissue homeostasis.

First Author  Chalise JP Year  2019
Journal  Proc Natl Acad Sci U S A Volume  116
Issue  30 Pages  15128-15133
PubMed ID  31289228 Mgi Jnum  J:277755
Mgi Id  MGI:6333052 Doi  10.1073/pnas.1906712116
Citation  Chalise JP, et al. (2019) Feedback regulation of Arid5a and Ppar-gamma2 maintains adipose tissue homeostasis. Proc Natl Acad Sci U S A 116(30):15128-15133
abstractText  Immune cells infiltrate adipose tissues and provide a framework to regulate energy homeostasis. However, the precise underlying mechanisms and signaling by which the immune system regulates energy homeostasis in metabolic tissues remain poorly understood. Here, we show that the AT-rich interactive domain 5A (Arid5a), a cytokine-induced nucleic acid binding protein, is important for the maintenance of adipose tissue homeostasis. Long-term deficiency of Arid5a in mice results in adult-onset severe obesity. In contrast, transgenic mice overexpressing Arid5a are highly resistant to high-fat diet-induced obesity. Inhibition of Arid5a facilitates the in vitro differentiation of 3T3-L1 cells and fibroblasts to adipocytes, whereas its induction substantially inhibits their differentiation. Molecular studies reveal that Arid5a represses the transcription of peroxisome proliferator activated receptor gamma 2 (Ppar-gamma2) due to which, in the absence of Arid5a, Ppar-gamma2 is persistently expressed in fibroblasts. This phenomenon is accompanied by enhanced fatty acid uptake in Arid5a-deficient cells, which shifts metabolic homeostasis toward prolipid metabolism. Furthermore, we show that Arid5a and Ppar-gamma2 are dynamically counterregulated by each other, hence maintaining adipogenic homeostasis. Thus, we show that Arid5a is an important negative regulator of energy metabolism and can be a potential target for metabolic disorders.
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