Fisher Fernando, Zhang Yuanyuan, Vincent Philippe F Y, Gajewiak Joanna, Gordon Thomas J, Glowatzki Elisabeth, Fuchs Paul Albert, McIntosh J Michael
Department of Biology, University of Utah, Salt Lake City, UT, United States.
The Center for Hearing and Balance, Otolaryngology-Head and Neck Surgery, The Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Front Cell Neurosci. 2021 Jul 23;15:697560. doi: 10.3389/fncel.2021.697560. eCollection 2021.
Efferent cholinergic neurons inhibit sensory hair cells of the vertebrate inner ear through the combined action of calcium-permeable α9α10-containing nicotinic acetylcholine receptors (nAChRs) and associated calcium-dependent potassium channels. The venom of cone snails is a rich repository of bioactive peptides, many with channel blocking activities. The conopeptide analog, RgIA-5474, is a specific and potent antagonist of α9α10-containing nAChRs. We added an alkyl functional group to the N-terminus of the RgIA-5474, to enable click chemistry addition of the fluorescent cyanine dye, Cy3. The resulting peptide, Cy3-RgIA-5727, potently blocked mouse α9α10 nAChRs expressed in oocytes (IC 23 pM), with 290-fold less activity on α7 nAChRs and 40,000-fold less activity on all other tested nAChR subtypes. The tight binding of Cy3-RgIA-5727 provided robust visualization of hair cell nAChRs juxtaposed to cholinergic efferent terminals in excised, unfixed cochlear tissue from mice. Presumptive postsynaptic sites on outer hair cells (OHCs) were labeled, but absent from inner hair cells (IHCs) and from OHCs in cochlear tissue from α9-null mice and in cochlear tissue pre-incubated with non-Cy3-conjugated RgIA-5474. In cochlear tissue from younger (postnatal day 10) mice, Cy3-RgIA-5727 also labeled IHCs, corresponding to transient efferent innervation at that age. Cy3 puncta in Kölliker's organ remained in the α9-null tissue. Pre-exposure with non-Cy3-conjugated RgIA-5474 or bovine serum albumin reduced this non-specific labeling to variable extents in different preparations. Cy3-RgIA-5727 and RgIA-5474 blocked the native hair cell nAChRs, within the constraints of application to the excised cochlear tissue. Cy3-RgIA-5727 or RgIA-5474 block of efferent synaptic currents in young IHCs was not relieved after 50 min washing, so effectively irreversible.
传出胆碱能神经元通过含钙通透型α9α10烟碱型乙酰胆碱受体(nAChRs)及相关钙依赖性钾通道的联合作用,抑制脊椎动物内耳的感觉毛细胞。锥螺毒液是生物活性肽的丰富来源,其中许多具有通道阻断活性。芋螺毒素类似物RgIA - 5474是含α9α10的nAChRs的特异性强效拮抗剂。我们在RgIA - 5474的N端添加了一个烷基官能团,以便通过点击化学添加荧光花菁染料Cy3。所得肽Cy3 - RgIA - 5727能有效阻断卵母细胞中表达的小鼠α9α10 nAChRs(IC 23 pM),对α7 nAChRs的活性低290倍,对所有其他测试的nAChR亚型的活性低40000倍。Cy3 - RgIA - 5727的紧密结合使得在从小鼠切除的未固定耳蜗组织中,与胆碱能传出终末并列的毛细胞nAChRs得到了清晰的可视化。外毛细胞(OHC)上的假定突触后位点被标记,但在α9基因敲除小鼠的耳蜗组织以及用未与Cy3偶联的RgIA - 5474预孵育的耳蜗组织中的内毛细胞(IHC)和OHC上未被标记。在较年幼(出生后第10天)小鼠的耳蜗组织中,Cy3 - RgIA - 5727也标记了IHC,这与该年龄段的短暂传出神经支配相对应。柯蒂器中的Cy3斑点在α9基因敲除组织中仍然存在。用未与Cy3偶联的RgIA - 5474或牛血清白蛋白预暴露在不同制剂中不同程度地减少了这种非特异性标记。在应用于切除的耳蜗组织的条件下,Cy3 - RgIA - 5727和RgIA - 5474阻断了天然毛细胞nAChRs。在年轻的IHC中,50分钟冲洗后,Cy3 - RgIA - 5727或RgIA - 5474对传出突触电流的阻断并未解除,因此实际上是不可逆的。