AI Article Synopsis

  • There is a growing need for effective anti-obesity drugs, but current options are limited; researchers are focusing on inhibiting an enzyme called GPAT to help with weight loss.
  • Recent studies have shown that certain compounds, specifically 2-(alkanesulfonamido)benzoic acids, can moderate GPAT activity and lead to promising weight loss results.
  • A newly synthesized compound, 4-([1,1'-biphenyl]-4-carbonyl)-2-(octanesulfonamido)benzoic acid, emerged as the strongest GPAT inhibitor, with an IC value of 8.5 µM, while modifications like adding hydroxyl or fluoro groups decreased its effectiveness.

Article Abstract

Despite a rising demand for anti-obesity therapeutics, few effective pharmacological options are clinically available that target the synthesis and accumulation of body fat. Moderate inhibition of mammalian glycerol-3-phosphate acyltransferase (GPAT) with 2-(alkanesulfonamido)benzoic acids has recently been described , accompanied by promising weight loss . docking studies with 2-(octanesulfonamido)benzoic acid modeled into the active site of squash GPAT revealed an unoccupied volume lined with hydrophobic residues proximal to C-4 and C-5 of the benzoic acid ring. In an effort to produce more potent GPAT inhibitors, a series of 4- and 5-substituted analogs were designed, synthesized, and evaluated for inhibitory activity. In general, compounds containing hydrophobic substituents at the 4- and 5-positions, such as biphenyl and alkylphenyl hydrocarbons, exhibited an improved inhibitory activity against GPAT . The most active compound, 4-([1,1'-biphenyl]-4-carbonyl)-2-(octanesulfonamido)benzoic acid, demonstrated an IC of 8.5 µM and represents the best GPAT inhibitor discovered to date. Conversely, further substitution with hydroxyl or fluoro groups, led to a 3-fold decrease in activity. These results are consistent with the presence of a hydrophobic pocket and may support the binding model as a potential tool for developing more potent inhibitors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4109893PMC
http://dx.doi.org/10.1039/C4MD00126EDOI Listing

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