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人类三指蛋白Lypd6是大脑中胆碱能系统的负调节因子。

Human Three-Finger Protein Lypd6 Is a Negative Modulator of the Cholinergic System in the Brain.

作者信息

Kulbatskii Dmitrii, Shenkarev Zakhar, Bychkov Maxim, Loktyushov Eugene, Shulepko Mikhail, Koshelev Sergey, Povarov Igor, Popov Alexander, Peigneur Steve, Chugunov Anton, Kozlov Sergey, Sharonova Irina, Efremov Roman, Skrebitsky Vladimir, Tytgat Jan, Kirpichnikov Mikhail, Lyukmanova Ekaterina

机构信息

Bioengineering Department, Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry Russian Academy of Sciences (RAS), Moscow, Russia.

Structural Biology Department, Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry Russian Academy of Sciences (RAS), Moscow, Russia.

出版信息

Front Cell Dev Biol. 2021 Sep 21;9:662227. doi: 10.3389/fcell.2021.662227. eCollection 2021.

Abstract

Lypd6 is a GPI-tethered protein from the Ly-6/uPAR family expressed in the brain. Lypd6 enhances the Wnt/β-catenin signaling, although its action on nicotinic acetylcholine receptors (nAChRs) have been also proposed. To investigate a cholinergic activity of Lypd6, we studied a recombinant water-soluble variant of the human protein (ws-Lypd6) containing isolated "three-finger" LU-domain. Experiments at different nAChR subtypes expressed in oocytes revealed the negative allosteric modulatory activity of ws-Lypd6. Ws-Lypd6 inhibited ACh-evoked currents at α3β4- and α7-nAChRs with IC of ∼35 and 10 μM, respectively, and the maximal amplitude of inhibition of 30-50%. EC of ACh at α3β4-nAChRs (∼30 μM) was not changed in the presence of 35 μM ws-Lypd6, while the maximal amplitude of ACh-evoked current was reduced by ∼20%. Ws-Lypd6 did not elicit currents through nAChRs in the absence of ACh. Application of 1 μM ws-Lypd6 significantly inhibited (up to ∼28%) choline-evoked current at α7-nAChRs in rat hippocampal slices. Similar to snake neurotoxin α-bungarotoxin, ws-Lypd6 suppressed the long-term potentiation (LTP) in mouse hippocampal slices. Colocalization of endogenous GPI-tethered Lypd6 with α3β4- and α7-nAChRs was detected in primary cortical and hippocampal neurons. Ws-Lypd6 interaction with the extracellular domain of α7-nAChR was modeled using the ensemble protein-protein docking protocol. The interaction of all three Lypd6 loops ("fingers") with the entrance to the orthosteric ligand-binding site and the loop C of the primary receptor subunit was predicted. The results obtained allow us to consider Lypd6 as the endogenous negative modulator involved in the regulation of the cholinergic system in the brain.

摘要

Lypd6是一种来自Ly-6/uPAR家族的糖基磷脂酰肌醇(GPI)锚定蛋白,在大脑中表达。Lypd6增强Wnt/β-连环蛋白信号传导,尽管也有人提出它对烟碱型乙酰胆碱受体(nAChRs)有作用。为了研究Lypd6的胆碱能活性,我们研究了一种含有分离的“三指”LU结构域的重组人水溶性变体蛋白(ws-Lypd6)。在卵母细胞中表达的不同nAChR亚型上进行的实验揭示了ws-Lypd6的负变构调节活性。Ws-Lypd6分别以约35和10 μM的IC50抑制α3β4-和α7-nAChRs上ACh诱发的电流,最大抑制幅度为30 - 50%。在35 μM ws-Lypd6存在的情况下,α3β4-nAChRs上ACh的EC50(约30 μM)没有变化,而ACh诱发电流的最大幅度降低了约20%。在没有ACh的情况下,ws-Lypd6不会通过nAChRs引发电流。应用1 μM ws-Lypd6可显著抑制(高达约28%)大鼠海马切片中α7-nAChRs上胆碱诱发的电流。与蛇神经毒素α-银环蛇毒素类似,ws-Lypd6抑制小鼠海马切片中的长时程增强(LTP)。在原代皮质和海马神经元中检测到内源性GPI锚定的Lypd6与α3β4-和α7-nAChRs共定位。使用整体蛋白质-蛋白质对接协议对ws-Lypd6与α7-nAChR细胞外结构域的相互作用进行了建模。预测了Lypd6的所有三个环(“手指”)与正构配体结合位点入口以及主要受体亚基的环C的相互作用。所获得的结果使我们能够将Lypd6视为参与大脑胆碱能系统调节的内源性负调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f2e/8494132/24986a45f3ec/fcell-09-662227-g001.jpg

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