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从寄生线虫旋毛虫中分离鉴定新型 ACC 配体门控氯离子通道家族成员 Hco-LCG-46。

Isolation and characterization of a novel member of the ACC ligand-gated chloride channel family, Hco-LCG-46, from the parasitic nematode Haemonchus contortus.

机构信息

Applied Bioscience Graduate Program, Faculty of Science, Ontario Tech University, 2000 Simcoe Street North, Oshawa, ON, L1H 7K4, Canada.

Neurobiology Section, Division of Biological Sciences, University of California, San Diego, La Jolla, CA, 92093, United States.

出版信息

Mol Biochem Parasitol. 2020 May;237:111276. doi: 10.1016/j.molbiopara.2020.111276. Epub 2020 Apr 6.

Abstract

The ACC-1 family of cys-loop receptors are ligand-gated chloride channels sensitive to acetylcholine (ACh), and are only present in invertebrates. Studies of this family of inhibitory receptors has provided insight into how they bind and respond to ACh in a manner vastly different from nicotinic acetylcholine receptors and appear to be present in tissues that are relevant to anthelmintic action. Here, we have identified two members of the ACC-1 family from the parasitic nematode Haemonchus contortus, Hco-LGC-46 and Hco-ACC-4. Hco-LGC-46 is an ACC subunit that has never been previously expressed and pharmacologically characterized. We found that Hco-LGC-46 when expressed in Xenopus laevis oocytes forms a functional homomeric channel that is responsive to the cholinergic agonists ACh and methylcholine. hco-lgc-46 expressed in a C. elegans lgc-46 null strain (ok2900) suppressed hypersensitivity to aldicarb in a manner similar to cel-lgc-46. It was also found that Hco-LGC-46 assembles with Hco-ACC-1 and produces a receptor that is over 5-fold more sensitive to ACh and responds to the cholinergic agonists methycholine and carbachol. In contrast, the co-expression of Hco-LGC-46 with Hco-ACC-4 resulted in non-functional channels in oocytes. Hco-ACC-4 also appears to form heteromeric channels with a previously characterized subunit, Hco-ACC-2. Co-expression of Hco-ACC-4 with Hco-ACC-2 resulted in a functional heteromeric channel with an EC value similar to that of the Hco-ACC-2 homomeric channel. However, the maximum currents generated in the ACC-4/ACC-2 channel were significantly (p < 0.005) lower than those from the ACC-2 homomeric channel. Overall, this is the first report confirming that lgc-46 encodes an acetylcholine-gated chloride channel which when co-expressed with acc-4 results in reduced receptor function or trafficking in oocytes.

摘要

ACC-1 家族的 cys 环受体是对乙酰胆碱(ACh)敏感的配体门控氯离子通道,仅存在于无脊椎动物中。对该家族抑制性受体的研究深入了解了它们如何以与烟碱型乙酰胆碱受体截然不同的方式结合和响应 ACh,并且似乎存在于与驱虫作用相关的组织中。在这里,我们从寄生线虫旋毛虫中鉴定了两个 ACC-1 家族成员,Hco-LGC-46 和 Hco-ACC-4。Hco-LGC-46 是一种以前从未表达过且未进行药理学表征的 ACC 亚基。我们发现,当在非洲爪蟾卵母细胞中表达时,Hco-LGC-46 形成一种对胆碱能激动剂 ACh 和甲基胆碱有反应的功能性同源通道。在 cel-lgc-46 缺失菌株(ok2900)中表达的 hco-lgc-46 以类似于 cel-lgc-46 的方式抑制了对 aldicarb 的超敏反应。还发现 Hco-LGC-46 与 Hco-ACC-1 组装并产生一种对 ACh 敏感 5 倍以上且对胆碱能激动剂甲氧基胆碱和卡巴胆碱有反应的受体。相比之下,Hco-LGC-46 与 Hco-ACC-4 的共表达导致卵母细胞中无功能通道。Hco-ACC-4 似乎还与先前表征的亚基 Hco-ACC-2 形成异源二聚体通道。Hco-ACC-4 与 Hco-ACC-2 的共表达导致具有与 Hco-ACC-2 同源二聚体通道相似 EC 值的功能性异源二聚体通道。然而,在 ACC-4/ACC-2 通道中产生的最大电流明显(p < 0.005)低于 ACC-2 同源二聚体通道中的电流。总体而言,这是第一个证实 lgc-46 编码乙酰胆碱门控氯离子通道的报告,当与 acc-4 共表达时,该通道会导致受体功能或在卵母细胞中的运输降低。

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