首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structural Basis for Ligand Regulation of the Fatty Acid-binding Protein 5 Peroxisome Proliferator-activated Receptor β/δ (FABP5-PPARβ/δ) Signaling Pathway
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Structural Basis for Ligand Regulation of the Fatty Acid-binding Protein 5 Peroxisome Proliferator-activated Receptor β/δ (FABP5-PPARβ/δ) Signaling Pathway

机译:脂肪酸结合蛋白5过氧化物酶体增殖物激活的受体β/δ(FABP5-PPARβ/δ)信号通路配体调控的结构基础

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摘要

Fatty acid-binding proteins (FABPs) are a widely expressed group of calycins that play a well established role in solubilizing cellular fatty acids. Recent studies, however, have recast FABPs as active participants in vital lipid-signaling pathways. FABP5, like its family members, displays a promiscuous ligand binding profile, capable of interacting with numerous long chain fatty acids of varying degrees of saturation. Certain “activating” fatty acids induce the protein's cytoplasmic to nuclear translocation, stimulating PPARβ/δ transactivation; however, the rules that govern this process remain unknown. Using a range of structural and biochemical techniques, we show that both linoleic and arachidonic acid elicit FABP5's translocation by permitting allosteric communication between the ligand-sensing β2 loop and a tertiary nuclear localization signal within the α-helical cap of the protein. Furthermore, we show that more saturated, nonactivating fatty acids inhibit nuclear localization signal formation by destabilizing this activation loop, thus implicating FABP5 specifically in cis-bonded, polyunsaturated fatty acid signaling.
机译:脂肪酸结合蛋白(FABPs)是一组广泛表达的花萼素,在溶解细胞脂肪酸中起着十分完善的作用。然而,最近的研究重塑了FABP作为重要脂质信号通路的积极参与者。 FABP5与其家族成员一样,显示出混杂的配体结合曲线,能够与多种饱和度不同的长链脂肪酸相互作用。某些“活化”脂肪酸诱导蛋白质的胞质发生核转运,从而刺激PPARβ/δ转运。但是,控制此过程的规则仍然未知。使用一系列结构和生化技术,我们发现亚油酸和花生四烯酸均可通过允许配体传感β2环与蛋白质α-螺旋帽内的三级核定位信号之间的变构通讯来引发FABP5的易位。此外,我们表明,更多的饱和非活化脂肪酸通过使该活化环不稳定来抑制核定位信号的形成,从而特别是在顺式键合,多不饱和脂肪酸信号传导中牵涉FABP5。

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