首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Complementary roles of the neuron-enriched endosomal proteins NEEP21 and calcyon in neuronal vesicle trafficking.
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Complementary roles of the neuron-enriched endosomal proteins NEEP21 and calcyon in neuronal vesicle trafficking.

机译:富含神经元的内体蛋白NEEP21和calcyon在神经元小泡运输中的互补作用。

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摘要

Understanding mechanisms governing the trafficking of transmembrane (TM) cargoes to synapses and other specialized membranes in neurons represents a long-standing challenge in cell biology. Investigation of the neuron-enriched endosomal protein of 21kDa (NEEP21, or NSG1or P21) and Calcyon (Caly, or NSG3) indicates that the emergence of the NEEP21/Caly/P19 gene family could play a vital role in the success of these mechanisms in vertebrates. The upshot of a sizeable body of work is that the NEEP21 and Caly perform distinct endocytic and recycling functions, which impact (i) amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid-type glutamate receptor trafficking at excitatory synapses; (ii) transport to/in neuronal axons; as well as (iii) proteolytic processing of amyloid precursor protein and neuregulin 1, suggesting roles in neuron development, synaptic function, and neurodegeneration. We argue that their distinct effects on cargo endocytosis and recycling depend on interactions with vesicle trafficking and synaptic scaffolding proteins. As they play complementary, but opposing roles in cargo endocytosis, recycling, and degradation, balancing NEEP21 and Caly expression levels or activity could be important for homeostasis in a variety of signaling pathways, and also lead to a novel therapeutic strategy for disorders like Alzheimer's disease and schizophrenia.
机译:了解控制跨膜(TM)货物向神经元突触和其他专门膜运输的机制,是细胞生物学中的一项长期挑战。对21kDa(NEEP21或NSG1或P21)和Calcyon(Caly或NSG3)的富含神经元的内体蛋白的研究表明,NEEP21 / Caly / P19基因家族的出现可能在这些机制的成功实施中起着至关重要的作用。脊椎动物。大量工作的结果是,NEEP21和Caly具有独特的内吞和再循环功能,从而影响(i)兴奋性突触中的氨基-3-羟基-5-甲基-4-异恶唑丙酸型谷氨酸受体的转运; (ii)运送至/进入神经元轴突;以及(iii)淀粉样蛋白前体蛋白和神经调节蛋白1的蛋白水解过程,提示其在神经元发育,突触功能和神经变性中的作用。我们认为,它们对货物内吞和再循环的独特影响取决于与囊泡运输和突触支架蛋白的相互作用。由于它们在货物内吞,循环利用和降解中发挥互补但相对的作用,因此平衡NEEP21和Caly表达水平或活性对于多种信号途径中的稳态可能很重要,并且还导致了针对阿尔茨海默氏病等疾病的新型治疗策略和精神分裂症。

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