: Acyl-coenzyme-A-binding protein (ACBP), also known as a diazepam-binding inhibitor (DBI), is a potent stimulator of appetite and lipogenesis. Bioinformatic analyses combined with systematic screens revealed that peroxisome proliferator-activated receptor gamma (PPARγ) is the transcription factor that best explains the ACBP/DBI upregulation in metabolically active organs including the liver and adipose tissue. The PPARγ agonist rosiglitazone-induced ACBP/DBI upregulation, as well as weight gain, that could be prevented by knockout of Acbp/Dbi in mice. Moreover, liver-specific knockdown of Pparg prevented the high-fat diet (HFD)-induced upregulation of circulating ACBP/DBI levels and reduced body weight gain. Conversely, knockout of Acbp/Dbi prevented the HFD-induced upregulation of PPARγ. Notably, a single amino acid substitution (F77I) in the γ2 subunit of gamma-aminobutyric acid A receptor (GABAAR), which abolishes ACBP/DBI binding to this receptor, prevented the HFD-induced weight gain, as well as the HFD-induced upregulation of ACBP/DBI, GABAAR γ2, and PPARγ. Based on these results, we postulate the existence of an obesogenic feedforward loop relying on ACBP/DBI, GABAAR, and PPARγ. Interruption of this vicious cycle, at any level, indistinguishably mitigates HFD-induced weight gain, hepatosteatosis, and hyperglycemia.

An obesogenic feedforward loop involving PPARγ, acyl-CoA binding protein and GABAA receptor / Anagnostopoulos, G., Motino, O., Li, S., Carbonnier, V., Chen, H., Sica, V., Durand, S., Bourgin, M., Aprahamian, F., Nirmalathasan, N., Donne, R., Desdouets, C., Sola, M.S., Kotta, K., Montegut, L., Lambertucci, F., Surdez, D., Sandrine, G., Delattre, O., Maiuri, M.C., et al.. - In: CELL DEATH & DISEASE. - ISSN 2041-4889. - 13:4(2022), p. 356. [10.1038/s41419-022-04834-5]

An obesogenic feedforward loop involving PPARγ, acyl-CoA binding protein and GABAA receptor

Maiuri M. C.;
2022

Abstract

: Acyl-coenzyme-A-binding protein (ACBP), also known as a diazepam-binding inhibitor (DBI), is a potent stimulator of appetite and lipogenesis. Bioinformatic analyses combined with systematic screens revealed that peroxisome proliferator-activated receptor gamma (PPARγ) is the transcription factor that best explains the ACBP/DBI upregulation in metabolically active organs including the liver and adipose tissue. The PPARγ agonist rosiglitazone-induced ACBP/DBI upregulation, as well as weight gain, that could be prevented by knockout of Acbp/Dbi in mice. Moreover, liver-specific knockdown of Pparg prevented the high-fat diet (HFD)-induced upregulation of circulating ACBP/DBI levels and reduced body weight gain. Conversely, knockout of Acbp/Dbi prevented the HFD-induced upregulation of PPARγ. Notably, a single amino acid substitution (F77I) in the γ2 subunit of gamma-aminobutyric acid A receptor (GABAAR), which abolishes ACBP/DBI binding to this receptor, prevented the HFD-induced weight gain, as well as the HFD-induced upregulation of ACBP/DBI, GABAAR γ2, and PPARγ. Based on these results, we postulate the existence of an obesogenic feedforward loop relying on ACBP/DBI, GABAAR, and PPARγ. Interruption of this vicious cycle, at any level, indistinguishably mitigates HFD-induced weight gain, hepatosteatosis, and hyperglycemia.
2022
An obesogenic feedforward loop involving PPARγ, acyl-CoA binding protein and GABAA receptor / Anagnostopoulos, G., Motino, O., Li, S., Carbonnier, V., Chen, H., Sica, V., Durand, S., Bourgin, M., Aprahamian, F., Nirmalathasan, N., Donne, R., Desdouets, C., Sola, M.S., Kotta, K., Montegut, L., Lambertucci, F., Surdez, D., Sandrine, G., Delattre, O., Maiuri, M.C., et al.. - In: CELL DEATH & DISEASE. - ISSN 2041-4889. - 13:4(2022), p. 356. [10.1038/s41419-022-04834-5]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/939774
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