首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Extracellular Ionic Locks Determine Variation in Constitutive Activity and Ligand Potency between Species Orthologs of the Free Fatty Acid Receptors FFA2 and FFA3
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Extracellular Ionic Locks Determine Variation in Constitutive Activity and Ligand Potency between Species Orthologs of the Free Fatty Acid Receptors FFA2 and FFA3

机译:细胞外离子锁确定游离脂肪酸受体FFA2和FFA3的物种直系同源物的本构活性和配体潜能变化

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摘要

Free fatty acid receptors 2 and 3 (FFA2 and FFA3) are G protein-coupled receptors for short chain free fatty acids (SCFAs). They respond to the same set of endogenous ligands but with distinct rank-order of potency such that acetate (C2) has been described as FFA2-selective, whereas propionate (C3) is non-selective. Although C2 was confirmed to be selective for human FFA2 over FFA3, this ligand was not selective between the mouse orthologs. Moreover, although C3 was indeed not selective between the human orthologs, it displayed clear selectivity for mouse FFA3 over mouse FFA2. This altered selectivity to C2 and C3 resulted from broad differences in SCFAs potency at the mouse orthologs. In studies to define the molecular basis for these observations, marked variation in ligand-independent constitutive activity was identified using a [35S]GTPγS assay. The orthologs with higher potency for the SCFAs, human FFA2 and mouse FFA3, displayed high constitutive activity in this assay, whereas the orthologs with lower potency for the agonist ligands, mouse FFA2 and human FFA3, did not. Sequence alignments of the second extracellular loop identified single negatively charged residues in FFA2 and FFA3 not conserved between species and predicted to form ionic lock interactions with arginine residues within the FFA2 or FFA3 agonist binding pocket to regulate constitutive activity and SCFA potency. Reciprocal mutation of these residues between species orthologs resulted in the induction (or repression) of constitutive activity and in most cases also yielded corresponding changes in SCFA potency.
机译:游离脂肪酸受体2和3(FFA2和FFA3)是短链游离脂肪酸(SCFA)的G蛋白偶联受体。它们对同一组内源性配体有反应,但具有不同的效能等级,因此乙酸盐(C2)被描述为FFA2选择性,而丙酸酯(C3)是非选择性的。尽管已证实C2对人FFA2的选择性高于FFA3,但该配体在小鼠直系同源物之间不是选择性的。此外,尽管C3在人类直系同源物之间确实不是选择性的,但它对小鼠FFA3的选择性优于对小鼠FFA2的选择性。对C2和C3的选择性改变是由于小鼠直系同源蛋白的SCFAs效能差异很大。在为这些观察确定分子基础的研究中,使用[ 35 S]GTPγS测定法鉴定了不依赖配体的本构活性的显着变化。在该测定中,对SCFA,人FFA2和小鼠FFA3具有较高效力的直系同源物显示出高的组成活性,而对激动剂配体,小鼠FFA2和人FFA3具有较低效力的直系同源物则没有。第二个细胞外环的序列比对确定了物种之间不保守的FFA2和FFA3中的单个带负电荷的残基,并预测与FFA2或FFA3激动剂结合口袋中的精氨酸残基形成离子锁相互作用,从而调节组成活性和SCFA效能。这些残基在物种直系同源物之间的相互突变导致组成性活性的诱导(或抑制),并且在大多数情况下还产生了SCFA效力的相应变化。

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