Bao Hong, Berlanga Monica L, Xue Mingshan, Hapip Sara M, Daniels Richard W, Mendenhall John M, Alcantara Adriana A, Zhang Bing
Section of Neurobiology, the University of Texas at Austin, Austin, TX 78712, USA.
Mol Cell Neurosci. 2007 Apr;34(4):662-78. doi: 10.1016/j.mcn.2007.01.007. Epub 2007 Jan 25.
The formation of synaptic connections with target cells and maintenance of axons are highly regulated and crucial for neuronal function. The atypical cadherin and G-protein-coupled receptor Flamingo and its orthologs in amphibians and mammals have been shown to regulate cell polarity, dendritic and axonal growth, and neural tube closure. However, the role of Flamingo in synapse formation and function and in axonal health remains poorly understood. Here we show that fmi mutations cause a significant increase in the number of ectopic synapses on muscles and result in the formation of novel en passant synapses along axons, and unique presynaptic varicosities, including active zones, within axons. The fmi mutations also cause defective synaptic responses in a small subset of muscles, an age-dependent loss of muscle innervation and a drastic degeneration of axons in 3rd instar larvae without an apparent loss of neurons. Neuronal expression of Flamingo rescues all of these synaptic and axonal defects and larval lethality. Based on these observations, we propose that Flamingo is required in neurons for synaptic target selection, synaptogenesis, the survival of axons and synapses, and adult viability. These findings shed new light on a possible role for Flamingo in progressive neurodegenerative diseases.
与靶细胞形成突触连接以及轴突的维持受到高度调控,对神经元功能至关重要。非典型钙黏蛋白和G蛋白偶联受体Flamingo及其在两栖动物和哺乳动物中的直系同源物已被证明可调节细胞极性、树突和轴突生长以及神经管闭合。然而,Flamingo在突触形成和功能以及轴突健康中的作用仍知之甚少。在这里,我们表明fmi突变导致肌肉上异位突触数量显著增加,并导致沿轴突形成新的中途突触,以及轴突内独特的突触前膨体,包括活性区。fmi突变还会导致一小部分肌肉出现有缺陷的突触反应、随年龄增长的肌肉去神经支配以及三龄幼虫轴突的严重退化,而神经元无明显损失。Flamingo的神经元表达可挽救所有这些突触和轴突缺陷以及幼虫致死率。基于这些观察结果,我们提出Flamingo在神经元中对于突触靶标选择、突触形成、轴突和突触的存活以及成虫活力是必需的。这些发现为Flamingo在进行性神经退行性疾病中的可能作用提供了新的线索。