首页> 美国卫生研究院文献>The Journal of Physiology >Age-dependent synapse withdrawal at axotomised neuromuscular junctions in Wlds mutant and Ube4b/Nmnat transgenic mice
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Age-dependent synapse withdrawal at axotomised neuromuscular junctions in Wlds mutant and Ube4b/Nmnat transgenic mice

机译:Wlds突变体和Ube4b / Nmnat转基因小鼠的无轴突神经肌肉接头处的年龄依赖性突触撤回

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摘要

Axons in WldS mutant mice are protected from Wallerian degeneration by overexpression of a chimeric Ube4b/Nmnat (Wld) gene. Expression of Wld protein was independent of age in these mice. However we identified two distinct neuromuscular synaptic responses to axotomy. In young adult Wlds mice, axotomy induced progressive, asynchronous synapse withdrawal from motor endplates, strongly resembling neonatal synapse elimination. Thus, five days after axotomy, 50–90 % of endplates were still partially or fully occupied and expressed endplate potentials (EPPs). By 10 days, fewer than 20 % of endplates still showed evidence of synaptic activity. Recordings from partially occupied junctions indicated a progressive decrease in quantal content in inverse proportion to endplate occupancy. In Wlds mice aged > 7 months, axons were still protected from axotomy but synapses degenerated rapidly, in wild-type fashion: within three days less than 5 % of endplates contained vestiges of nerve terminals. The axotomy-induced synaptic withdrawal phenotype decayed with a time constant of ∼30 days. Regenerated synapses in mature Wlds mice recapitulated the juvenile phenotype. Within 4–6 days of axotomy 30–50 % of regenerated nerve terminals still occupied motor endplates. Age-dependent synapse withdrawal was also seen in transgenic mice expressing the Wld gene. Co-expression of Wld protein and cyan fluorescent protein (CFP) in axons and neuromuscular synapses did not interfere with the protection from axotomy conferred by the Wld gene. Thus, Wld expression unmasks age-dependent, compartmentally organised programmes of synapse withdrawal and degeneration.
机译:Wld S 突变小鼠中的轴突通过嵌合Ube4b / Nmnat(Wld)基因的过表达而免受Wallerian变性的影响。在这些小鼠中,Wld蛋白的表达与年龄无关。但是,我们确定了对轴切术的两种不同的神经肌肉突触反应。在年轻的成年Wld s 小鼠中,轴突切开术导致运动终板进行性,异步突触退出,这与新生儿突触消除非常相似。因此,在轴突切开术后五天,仍有50-90%的终板仍被部分或完全占据,并表现出终板电位(EPP)。到10天时,不到20%的终板仍显示出突触活性的证据。来自部分占据的路口的记录表明,数量的减少与端板的占用成反比。在大于7个月大的Wld s 小鼠中,轴突仍然可以不受轴突切开的保护,但是突触以野生型快速退化:三天内,不到5%的终板包含神经末梢的痕迹。轴突切开引起的突触退缩表型以〜30天的时间常数衰减。成熟的Wld s 小鼠的再生突触概括了少年的表型。在轴切手术后的4–6天内,仍有30–50%的再生神经末梢占据了运动终板。在表达Wld基因的转基因小鼠中也观察到了年龄依赖性的突触退缩。 Wld蛋白和青色荧光蛋白(CFP)在轴突和神经肌肉突触中的共表达不会干扰Wld基因赋予的抗轴切术保护作用。因此,Wld表达揭示了年龄依赖性,间隔组织的突触退缩和变性的程序。

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