Darvas Martin, Morsch Marco, Racz Ildiko, Ahmadi Seifollah, Swandulla Dieter, Zimmer Andreas
Institute of Molecular Psychiatry, University of Bonn, Bonn, Germany.
Eur Neuropsychopharmacol. 2009 Sep;19(9):670-81. doi: 10.1016/j.euroneuro.2009.03.007. Epub 2009 Apr 29.
The agonist binding sensitivity and desensitization kinetics of nicotinic acetylcholine receptors (nAChRs) can be modulated by snake venom neurotoxins and related endogenous small proteins of the uPAR-Ly6 family. Here we identify Lypd6, a distantly related member of the u-PAR/Ly-6 family expressed in neurons as a novel modulator of nAChRs. Lypd6 overexpressed in trigeminal ganglia neurons selectively enhanced the Ca2+-component of nicotine-evoked currents through nAChRs, as evidenced by comparative whole-cell patch clamp recordings and Ca2+-imaging in wildtype and transgenic mice overexpressing Lypd6. In contrast, a knockdown of Lypd6 expression using siRNAs selectively reduced nicotine-evoked Ca2+-currents. Pharmacological experiments revealed that the nAChRs involved in this process are heteromers. Transgenic mice displayed behaviors that were indicative of an enhanced cholinergic tone, such as a higher locomotor arousal, increased prepulse-inhibition and hypoalgesia. These mice overexpressing Lypd6 mice were also more sensitive to the analgesic effects of nicotine. Transgenic mice expressing siRNAs directed against Lypd6 were unable to procreate, thus indicating a vital role for this protein. Taken together, Lypd6 seems to constitute a novel modulator of nAChRs that affects receptor function by selectively increasing Ca2+-influx through this ion channels.
烟碱型乙酰胆碱受体(nAChRs)的激动剂结合敏感性和脱敏动力学可被蛇毒神经毒素以及uPAR-Ly6家族相关的内源性小蛋白所调节。在此,我们鉴定出Lypd6,它是u-PAR/Ly-6家族中一个关系较远的成员,在神经元中表达,是nAChRs的一种新型调节剂。通过比较野生型和过表达Lypd6的转基因小鼠的全细胞膜片钳记录和Ca2+成像,发现三叉神经节神经元中过表达的Lypd6选择性增强了通过nAChRs的尼古丁诱发电流的Ca2+成分。相反,使用小干扰RNA(siRNAs)敲低Lypd6表达可选择性降低尼古丁诱发的Ca2+电流。药理学实验表明,参与这一过程的nAChRs是异聚体。转基因小鼠表现出一些行为,表明胆碱能张力增强,如更高的运动觉醒、增强的前脉冲抑制和痛觉减退。这些过表达Lypd6的小鼠对尼古丁的镇痛作用也更敏感。表达针对Lypd6的siRNAs的转基因小鼠无法繁殖,因此表明该蛋白具有重要作用。综上所述,Lypd6似乎构成了nAChRs的一种新型调节剂,通过选择性增加通过该离子通道的Ca2+内流来影响受体功能。