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Medium chain fatty acids are selective peroxisome proliferator activated receptor (PPAR) γ activators and pan-PPAR partial agonists

机译:中链脂肪酸是选择性过氧化物酶体增殖物激活受体(PPAR)γ激活剂和pan-PPAR部分激动剂

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摘要

Thiazolidinediones (TZDs) act through peroxisome proliferator activated receptor (PPAR) γ to increase insulin sensitivity in type 2 diabetes (T2DM), but deleterious effects of these ligands mean that selective modulators with improved clinical profiles are needed. We obtained a crystal structure of PPARγ ligand binding domain (LBD) and found that the ligand binding pocket (LBP) is occupied by bacterial medium chain fatty acids (MCFAs). We verified that MCFAs (C8-C10) bind the PPARγ LBD in vitro and showed that they are low-potency partial agonists that display assay-specific actions relative to TZDs; they act as very weak partial agonists in transfections with PPARγ LBD, stronger partial agonists with full length PPARγ and exhibit full blockade of PPARγ phosphorylation by cyclin-dependent kinase 5 (cdk5), linked to reversal of adipose tissue insulin resistance. MCFAs that bind PPARγ also antagonize TZD-dependent adipogenesis in vitro. X-ray structure B-factor analysis and molecular dynamics (MD) simulations suggest that MCFAs weakly stabilize C-terminal activation helix (H) 12 relative to TZDs and this effect is highly dependent on chain length. By contrast, MCFAs preferentially stabilize the H2-H3/β-sheet region and the helix (H) 11-H12 loop relative to TZDs and we propose that MCFA assay-specific actions are linked to their unique binding mode and suggest that it may be possible to identify selective PPARγ modulators with useful clinical profiles among natural products.
机译:噻唑烷二酮(TZD)通过过氧化物酶体增殖物激活受体(PPAR)γ来增加2型糖尿病(T2DM)的胰岛素敏感性,但是这些配体的有害作用意味着需要具有改善的临床特征的选择性调节剂。我们获得了PPARγ配体结合域(LBD)的晶体结构,发现配体结合口袋(LBP)被细菌中链脂肪酸(MCFA)占据。我们验证了MCFA(C8-C10)在体外与PPARγLBD结合,并表明它们是低效的部分激动剂,相对于TZDs表现出特定的测定作用。它们在PPARγLBD转染中起非常弱的部分激动剂的作用,在全长PPARγ中起较强的部分激动剂的作用,并通过细胞周期蛋白依赖性激酶5(cdk5)完全阻断PPARγ磷酸化,这与脂肪组织胰岛素抵抗的逆转有关。结合PPARγ的MCFAs在体外也拮抗TZD依赖性脂肪形成。 X射线结构的B因子分析和分子动力学(MD)模拟表明,MCFA相对于TZD较弱地稳定了C末端活化螺旋(H)12,这种作用高度依赖于链长。相比之下,相对于TZD,MCFA优先稳定H2-H3 /β-sheet区和螺旋(H)11-H12环,我们建议将MCFA分析特异的作用与其独特的结合模式联系起来,并暗示可能有可能在天然产物中鉴定具有有用临床特征的选择性PPARγ调节剂。

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