CEA, iBiTec-S, Service d'Ingénierie Moléculaire des Protéines (SIMOPRO), Gif-sur-Yvette, F-91191, France.
Biol Cell. 2010 Apr 9;102(7):409-20. doi: 10.1042/BC20090171.
The idea that GPCRs (G-protein-coupled receptors) may exist as homo- or hetero-oligomers, although still controversial, is now widely accepted. Nevertheless, the functional roles of oligomerization are still unclear and gaining greater insight into the mechanisms underlying the dynamics of GPCR assembly and, in particular, assessing the effect of ligands on this process seems important. We chose to focus our present study on the effect of MT7 (muscarinic toxin 7), a highly selective allosteric peptide ligand, on the oligomerization state of the hM1 (human M1 muscarinic acetylcholine receptor subtype).
We analysed the hM1 oligomerization state in membrane preparations or in live cells and observed the effect of MT7 via four complementary techniques: native-PAGE electrophoresis analysed by both Western blotting and autoradiography on solubilized membrane preparations of CHO-M1 cells (Chinese-hamster ovary cells expressing muscarinic M1 receptors); FRET (fluorescence resonance energy transfer) experiments on cells expressing differently tagged M1 receptors using either an acceptor photobleaching approach or a novel fluorescence emission anisotropy technique; and, finally, by BRET (bioluminescence resonance energy transfer) assays. Our results reveal that MT7 seems to protect the M1 receptor from the dissociating effect of the detergent and induces an increase in the FRET and BRET signals, highlighting its ability to affect the dimeric form of the receptor.
Our results suggest that MT7 binds to a dimeric form of hM1 receptor, favouring the stability of this receptor state at the cellular level, probably by inducing some conformational rearrangements of the pre-existing muscarinic receptor homodimers.
尽管 G 蛋白偶联受体(GPCRs)可能以同型或异型寡聚体形式存在的观点仍然存在争议,但现在已被广泛接受。然而,寡聚化的功能作用仍不清楚,深入了解 GPCR 组装的动力学机制,特别是评估配体对这一过程的影响,似乎很重要。我们选择将目前的研究重点放在 MT7(毒蕈碱毒素 7)上,这是一种高度选择性的变构肽配体,对 hM1(人 M1 毒蕈碱乙酰胆碱受体亚型)的寡聚状态的影响。
我们在膜制剂或活细胞中分析了 hM1 的寡聚状态,并通过四种互补技术观察 MT7 的影响:在表达毒蕈碱 M1 受体的 CHO-M1 细胞(中国仓鼠卵巢细胞)的可溶性膜制剂上通过 Western blot 和放射自显影分析进行的天然-PAGE 电泳;使用接受体光漂白方法或新的荧光发射各向异性技术在表达不同标记的 M1 受体的细胞上进行的 FRET(荧光共振能量转移)实验;最后,通过 BRET(生物发光共振能量转移)测定。我们的结果表明,MT7 似乎能保护 M1 受体免受去污剂的解离作用,并增加 FRET 和 BRET 信号,突出了其影响受体二聚体形式的能力。
我们的结果表明,MT7 结合到 hM1 受体的二聚体形式,在细胞水平上有利于这种受体状态的稳定性,可能通过诱导预先存在的毒蕈碱受体同二聚体的一些构象重排。