Leao Richardson N, Berntson Amy, Forsythe Ian D, Walmsley Bruce
Synapse and Hearing Laboratory, Division of Neuroscience, John Curtin School of Medical Research, Australian National University, PO Box 334, Canberra, ACT 0200, Australia.
J Physiol. 2004 Aug 15;559(Pt 1):25-33. doi: 10.1113/jphysiol.2004.067421. Epub 2004 Jul 2.
We have investigated changes in the neuronal excitability of the auditory brainstem in a congenitally deaf mouse (deafness dn/dn). Whole cell patch recordings from principal neurones of the medial nucleus of the trapezoid body (MNTB) showed strikingly enhanced excitability in the deaf mice when compared to control CBA mice at 12-14 days postnatal. MNTB neurones in normal CBA mice showed the phenotypic single action potential response on depolarization in current clamp; however, recordings from CBA mice carrying the homozygous deafness mutation fired trains of action potentials on depolarization. We show here that these changes are associated with reduced functional expression of dendrotoxin-sensitive Kv1 potassium channels. In contrast, no differences were found in voltage-gated calcium currents between control and deaf mice. These results reveal that loss of hair cell function in the cochlea leads to changes in ion channel expression in the central nervous system and suggests that this deafness model will be an important tool in understanding central changes occurring in human congenital deafness and in exploring activity-dependent regulation of ion channel expression.
我们研究了先天性耳聋小鼠(耳聋dn/dn)听觉脑干神经元兴奋性的变化。在出生后12 - 14天,对梯形体内侧核(MNTB)的主要神经元进行全细胞膜片钳记录,结果显示与对照CBA小鼠相比,耳聋小鼠的兴奋性显著增强。正常CBA小鼠的MNTB神经元在电流钳模式下去极化时表现出典型的单动作电位反应;然而,携带纯合耳聋突变的CBA小鼠的记录显示,去极化时会产生动作电位串。我们在此表明,这些变化与树突毒素敏感的Kv1钾通道功能表达降低有关。相比之下,对照小鼠和耳聋小鼠之间的电压门控钙电流没有差异。这些结果表明,耳蜗毛细胞功能丧失会导致中枢神经系统离子通道表达的变化,并表明该耳聋模型将成为理解人类先天性耳聋中发生的中枢变化以及探索离子通道表达的活动依赖性调节的重要工具。