首页> 美国卫生研究院文献>The Journal of Biological Chemistry >PheVI:09 (Phe6.44) as a Sliding Microswitch in Seven-transmembrane (7TM) G Protein-coupled Receptor Activation
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PheVI:09 (Phe6.44) as a Sliding Microswitch in Seven-transmembrane (7TM) G Protein-coupled Receptor Activation

机译:PheVI:09(Phe6.44)作为七膜(7TM)G蛋白偶联受体激活中的滑动微开关

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摘要

In seven-transmembrane (7TM), G protein-coupled receptors, highly conserved residues function as microswitches, which alternate between different conformations and interaction partners in an extended allosteric interface between the transmembrane segments performing the large scale conformational changes upon receptor activation. Computational analysis using x-ray structures of the β2-adrenergic receptor demonstrated that PheVI:09 (6.44), which in the inactive state is locked between the backbone and two hydrophobic residues in transmembrane (TM)-III, upon activation slides ∼2 Å toward TM-V into a tight pocket generated by five hydrophobic residues protruding from TM-III and TM-V. Of these, the residue in position III:16 (3.40) (often an Ile or Val) appears to function as a barrier or gate for the transition between inactive and active conformation. Mutational analysis showed that PheVI:09 is essential for the constitutive and/or agonist-induced signaling of the ghrelin receptor, GPR119, the β2-adrenergic receptor, and the neurokinin-1 receptor. Substitution of the residues constituting the hydrophobic pocket between TM-III and TM-V in the ghrelin receptor in four of five positions impaired receptor signaling. In GPR39, representing the 12% of 7TM receptors lacking an aromatic residue at position VI:09, unchanged agonist-induced signaling was observed upon Ala substitution of LeuVI:09 despite reduced cell surface expression of the mutant receptor. It is concluded that PheVI:09 constitutes an aromatic microswitch that stabilizes the active, outward tilted conformation of TM-VI relative to TM-III by sliding into a tight hydrophobic pocket between TM-III and TM-V and that the hydrophobic residue in position III:16 constitutes a gate for this transition.
机译:在七跨膜(7TM)中,G蛋白偶联受体的高度保守残基起微开关的作用,在跨膜段之间的扩展构构界面中,不同构象和相互作用伙伴之间交替变化,从而在受体激活后执行大规模构象变化。使用β2-肾上腺素能受体的x射线结构进行的计算分析表明,处于激活状态时,PheVI:09(6.44)处于静止状态时,PheVI:09(6.44)被锁定在骨架和跨膜(TM)-III中的两个疏水残基之间。由TM-III和TM-V突出的5个疏水残基产生的一个紧密的口袋中,向着TM-V的方向移动。其中,位置III:16(3.40)中的残基(通常是Ile或Val)似乎充当了非活性构象和活性构象之间过渡的屏障或门。突变分析表明,PheVI:09对于ghrelin受体,GPR119,β2-肾上腺素能受体和Neurokinin-1受体的组成型和/或激动剂诱导的信号传导至关重要。 ghrelin受体中五个位置中的四个位置中构成TM-III和TM-V之间疏水口袋的残基取代会损害受体信号传导。在GPR39中,代表12%的7TM受体在VI:09位置缺少芳族残基,尽管突变受体的细胞表面表达降低,但在Ala取代LeuVI:09时仍观察到了激动剂诱导的信号未改变。结论是,PheVI:09构成了一个芳香族微开关,它通过滑入TM-III和TM-V之间的紧密疏水口袋中,并使TM-VI相对于TM-III的活性,向外倾斜的构象稳定,并且疏水残基位于III:16构成了这一过渡的大门。

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