A new class of receptors: Lipids regulate mammalian Gsα-stimulated adenylyl cyclase activities via their membrane anchors

Marius Landau, Sherif Elsabbagh, Harald Gross, Adrian Fuchs, Anita C.F. Schultz, Joachim E. Schultz
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Abstract

The biosynthesis of cAMP by mammalian membrane-bound adenylyl cyclases (mACs) is predominantly regulated by G-protein-coupled-receptors (GPCRs). Up to now the two hexahelical transmembrane domains of mACs were considered to fix the enzyme to membranes. Here we show that the transmembrane domains serve in addition as signal receptors and transmitters of lipid signals that control Gsα-stimulated mAC activities. We identify aliphatic fatty acids and anandamide as receptor ligands of mAC isoforms 1 to 7 and 9. The ligands enhance (mAC isoforms 2, 3, 7, and 9) or attenuate (isoforms 1, 4, 5, and 6) Gsα-stimulated mAC activities in vitro and in vivo. Substitution of the stimulatory membrane receptor of mAC3 by the inhibitory receptor of mAC5 results in a ligand inhibited mAC5-mAC3 chimera. Thus, we discovered a new class of membrane receptors in which two signaling modalities are at a crossing, direct tonic lipid and indirect phasic GPCR-Gsα signaling regulating the biosynthesis of cAMP.
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一类新的受体:脂质通过膜锚调节哺乳动物 Gsα 刺激的腺苷酸环化酶活性
哺乳动物膜结合腺苷酸环化酶(mACs)的 cAMP 生物合成主要受 G 蛋白偶联受体(GPCRs)的调控。迄今为止,人们一直认为 mACs 的两个六螺旋跨膜结构域将酶固定在膜上。在这里,我们发现跨膜结构域还可作为信号受体和脂质信号的传递者,控制 Gsα 刺激的 mAC 活性。我们发现脂肪族脂肪酸和anandamide是mAC异构体1至7和9的受体配体。这些配体可增强(mAC 同工酶 2、3、7 和 9)或减弱(同工酶 1、4、5 和 6)体外和体内 Gsα 刺激的 mAC 活性。用 mAC5 的抑制性受体取代 mAC3 的刺激性膜受体会产生配体抑制的 mAC5-mAC3 嵌合体。因此,我们发现了一类新的膜受体,其中有两种信号模式处于交叉状态,即直接的补体脂质和间接的相位 GPCR-Gsα 信号调节 cAMP 的生物合成。
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