Chung Beryl Y T, Bignell Warren, Jacklin Derek L, Winters Boyer D, Bailey Craig D C
Department of Biomedical Sciences, Ontario Veterinary College, University of Guelph, Guelph, Ontario, Canada; and.
Department of Psychology, College of Social and Applied Human Sciences, University of Guelph, Guelph, Ontario, Canada.
J Neurophysiol. 2016 Nov 1;116(5):2043-2055. doi: 10.1152/jn.00370.2016. Epub 2016 Aug 3.
The hippocampus plays a key role in learning and memory. The normal development and mature function of hippocampal networks supporting these cognitive functions depends on afferent cholinergic neurotransmission mediated by nicotinic acetylcholine receptors. Whereas it is well-established that nicotinic receptors are present on GABAergic interneurons and on glutamatergic presynaptic terminals within the hippocampus, the ability of these receptors to mediate postsynaptic signaling in pyramidal neurons is not well understood. We use whole cell electrophysiology to show that heteromeric nicotinic receptors mediate direct inward currents, depolarization from rest and enhanced excitability in hippocampus CA1 pyramidal neurons of male mice. Measurements made throughout postnatal development provide a thorough developmental profile for these heteromeric nicotinic responses, which are greatest during the first 2 wk of postnatal life and decrease to low adult levels shortly thereafter. Pharmacological experiments show that responses are blocked by a competitive antagonist of α4β2* nicotinic receptors and augmented by a positive allosteric modulator of α5 subunit-containing receptors, which is consistent with expression studies suggesting the presence of α4β2 and α4β2α5 nicotinic receptors within the developing CA1 pyramidal cell layer. These findings demonstrate that functional heteromeric nicotinic receptors are present on CA1 pyramidal neurons during a period of major hippocampal development, placing these receptors in a prime position to play an important role in the establishment of hippocampal cognitive networks.
海马体在学习和记忆中起着关键作用。支持这些认知功能的海马体网络的正常发育和成熟功能依赖于由烟碱型乙酰胆碱受体介导的传入胆碱能神经传递。虽然已经明确烟碱型受体存在于海马体内的GABA能中间神经元和谷氨酸能突触前终末上,但这些受体在锥体细胞中介导突触后信号传导的能力尚未得到充分了解。我们使用全细胞电生理学方法表明,异聚烟碱型受体介导雄性小鼠海马体CA1锥体细胞的直接内向电流、静息膜电位去极化和兴奋性增强。对整个出生后发育过程的测量为这些异聚烟碱型反应提供了详尽的发育概况,这些反应在出生后的前两周最为强烈,随后不久降至成年期的低水平。药理学实验表明,这些反应被α4β2*烟碱型受体的竞争性拮抗剂阻断,并被含α5亚基受体的正变构调节剂增强,这与表达研究结果一致,表明在发育中的CA1锥体细胞层中存在α4β2和α4β2α5烟碱型受体。这些发现表明,在海马体主要发育阶段,功能性异聚烟碱型受体存在于CA1锥体细胞上,使这些受体在海马体认知网络的建立中处于发挥重要作用的首要位置。