Mesoy Susanne M, Bridgland-Taylor Matthew, Lummis Sarah C R
Department of Biochemistry, University of Cambridge, University of Cambridge, Cambridge, United Kingdom.
Clinical Pharmacology and Safety Sciences, Biopharmaceuticals R&D, AstraZeneca, Cambridge, United Kingdom.
Front Physiol. 2022 May 4;13:850782. doi: 10.3389/fphys.2022.850782. eCollection 2022.
The role of the outermost helix (M4) in the pentameric ligand-gated ion channel (pLGIC) family is currently not fully understood. It is known that M4 is important for receptor assembly, possibly via interactions with neighboring M1 and M3 helices. M4 can also transmit information on the lipid content of the membrane to the gating mechanism, and it may form a link to the extracellular domain via the Cys-loop. Our previous study examining the α4β2 nACh receptor M4 helix using HEK cells indicated M4 here is more sensitive to change than those of other pLGIC. Many of these other studies, however, were performed in oocytes. Here we examine the nine previously identified nonfunctional α4β2 nACh receptor M4 mutant receptors using this system. The data reveal that seven of these mutant receptors do function when expressed in oocytes, with only 2, the conserved Asp at the intracellular end of M4 and a Phe in the center, having a similar phenotype (nonfunctional) in both HEK cells and oocytes. The oocyte data are more consistent with studies in other pLGIC and demonstrate the importance of the expression system used. Of the many differences between these two expression systems, we suggest that the different lipid content of the plasma membrane is a possible candidate for explaining these discrepancies.
目前,五聚体配体门控离子通道(pLGIC)家族中最外层螺旋(M4)的作用尚未完全明确。已知M4对受体组装很重要,可能是通过与相邻的M1和M3螺旋相互作用实现的。M4还可以将膜脂质含量的信息传递给门控机制,并且它可能通过半胱氨酸环与细胞外结构域形成连接。我们之前利用HEK细胞对α4β2烟碱型乙酰胆碱受体M4螺旋进行研究,结果表明该受体的M4螺旋比其他pLGIC的M4螺旋对变化更敏感。然而,许多其他研究是在卵母细胞中进行的。在此,我们利用该系统研究了9种先前鉴定出的无功能的α4β2烟碱型乙酰胆碱受体M4突变体受体。数据显示,其中7种突变体受体在卵母细胞中表达时具有功能,只有位于M4细胞内末端的保守天冬氨酸和中间的苯丙氨酸这2种突变体受体在HEK细胞和卵母细胞中具有相似的表型(无功能)。卵母细胞实验数据与其他pLGIC的研究结果更一致,证明了所用表达系统的重要性。在这两种表达系统的诸多差异中,我们认为质膜脂质含量的不同可能是解释这些差异的一个因素。