Bltp1 Is Required for Survival and Normal Development and Function of the Neuromuscular Junction in Mice

神经肌肉接头 生物 神经递质 神经传递 神经肌肉传递 先天性肌无力综合征 突触 内分泌学 内科学 突触小泡 细胞生物学 突触裂 运动神经 磷脂 电生理学 神经科学 膈神经 电机端板 乙酰胆碱 胆碱能的 胚胎发生 突变体 胚胎 运动神经元 突触发生 神经生长因子 外周神经系统 神经系统 肾上腺素能的 振膜(声学) 神经递质受体 胆碱 阿格林 拉顿 卵磷脂
作者
Yun Liu,Qiaohong Ye,K. Dengke,Beverly A. Rothermel,Weichun Lin
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:45 (44): e0029252025-e0029252025 被引量:2
标识
DOI:10.1523/jneurosci.0029-25.2025
摘要

BLTP1 (Bridge-Like Lipid Transfer Protein Family Member 1), previously known as Tweek, Kiaa1109, FSA, or 4932438A13Rik, is a nonvesicular lipid transport protein linked to Alkuraya-Kučinskas syndrome (AKS), an autosomal recessive disorder with severe brain malformations and arthrogryposis in humans. Although BLTP1 is known to be involved in the transfer of phospholipids between organellar membranes at membrane contact sites, its specific role during mammalian development remains poorly defined. Here we characterized the development of the neuromuscular junction (NMJ) in Bltp1 knock-out (Bltp1-/- ) mice of either sex. These mutant mice die perinatally, exhibiting reduced growth of intramuscular motor nerves and a reduction in the size of the NMJ, compared with littermate controls. Electrophysiological analysis of the diaphragm muscle in Bltp1 -/- embryos reveals defects in synaptic transmission at the NMJ. Notably, the frequency of spontaneous neurotransmitter release is markedly increased, whereas evoked neurotransmitter release and quantal content are reduced. In addition, neuromuscular synapses in Bltp1 -/- mice fail to respond to a repetitive stimulation. Remarkably, the impairment of intramuscular nerve growth in Bltp1-/- embryos is restored by supplementing pregnant dams with lecithin, a mixture of unsaturated phospholipids naturally present in foods, although lecithin supplement does not improve the overall survival of these mutant mice. Together, these results demonstrate that BLTP1 plays important roles during development for proper intramuscular nerve growth and neuromuscular synaptic function and suggest that AKS patients may benefit from phospholipid supplementation such as lecithin.
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