Patel V, Patel A M, McArdle J J
Department of Pharmacology, Physiology, and Neuroscience, New Jersey Medical School-Rutgers University, Newark, NJ 07103, USA.
Department of Pharmacology, Physiology, and Neuroscience, New Jersey Medical School-Rutgers University, Newark, NJ 07103, USA.
Neuroscience. 2016 Jun 2;324:1-10. doi: 10.1016/j.neuroscience.2016.03.001. Epub 2016 Mar 5.
Motor, sensory, and autonomic abnormalities are reported for toll-like receptor 9 (TLR9) knock-out (KO) mice. However, a physiological role of TLR9 in the nervous system is largely unknown. Since altered synaptic transmission can contribute to sensory and motor abnormalities, we evaluated neuromuscular junction (NMJ) function and morphology of TLR9 KO mice. Triangularis sterni nerve-muscle preparations were dissected from TLR9 KO and age-matched control mice. Two-electrode voltage clamp of the motor endplate revealed that the amplitude and frequency of miniature end plate currents (mEPCs) for TLR9 KO NMJs were significantly greater than control. In contrast, mean endplate current (EPC, 1Hz) amplitude was equivalent to control. The ratio of mean EPC to mean mEPC amplitude indicated a decline of quantal content (m) for TLR9 KO NMJs. Furthermore, m declined more rapidly than control in response to 50-Hz stimulus trains. A rightward shift of the mEPC amplitude distribution suggested formation of vesicles containing larger amounts of acetylcholine (ACh). Staining with rhodamine α-bungarotoxin revealed a significant decline of endplate size in TLR9 KO mice. This alteration may result from ACh-induced decline of acetylcholine receptor (AChR) expression resulting from increased frequency and amplitude of mEPCs. At the same time, excessive spontaneous vesicular ACh release may initiate retrograde suppression of excitation-secretion coupling. These data suggest a novel role of TLR9 in the development of the NMJ.
据报道,Toll样受体9(TLR9)基因敲除(KO)小鼠存在运动、感觉和自主神经功能异常。然而,TLR9在神经系统中的生理作用在很大程度上尚不清楚。由于突触传递改变可能导致感觉和运动异常,我们评估了TLR9基因敲除小鼠的神经肌肉接头(NMJ)功能和形态。从TLR9基因敲除小鼠和年龄匹配的对照小鼠中分离出胸骨三角肌神经-肌肉标本。运动终板的双电极电压钳显示,TLR9基因敲除小鼠神经肌肉接头的微小终板电流(mEPCs)的幅度和频率显著高于对照组。相比之下,平均终板电流(EPC,1Hz)幅度与对照组相当。平均EPC与平均mEPC幅度的比值表明,TLR9基因敲除小鼠神经肌肉接头的量子含量(m)下降。此外,在50Hz刺激串作用下,m的下降速度比对照组更快。mEPC幅度分布的右移表明形成了含有大量乙酰胆碱(ACh)的囊泡。用罗丹明α-银环蛇毒素染色显示,TLR9基因敲除小鼠的终板大小显著减小。这种改变可能是由于mEPCs频率和幅度增加导致ACh诱导的乙酰胆碱受体(AChR)表达下降所致。同时,过多的自发性囊泡ACh释放可能引发兴奋-分泌偶联的逆行抑制。这些数据表明TLR9在神经肌肉接头发育中具有新的作用。