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Two for the Price of One: A Neuroprotective Chaperone Kit within NAD Synthase Protein NMNAT2

机译:两个价格合一:NAD合酶蛋白NMNAT2中的神经保护伴侣蛋白试剂盒

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One of the most fascinating properties of the brain is the ability to function smoothly across decades of a lifespan. Neurons are nondividing mature cells specialized in fast electrical and chemical communication at synapses. Often, neurons and synapses operate at high levels of activity through sophisticated arborizations of long axons and dendrites that nevertheless stay healthy throughout years. On the other hand, aging and activity-dependent stress strike onto the protein machineries turning proteins unfolded and prone to form pathological aggregates associated with neurodegeneration. How do neurons protect from those insults and remain healthy for their whole life? Ali and colleagues now present a molecular mechanism by which the enzyme nicotinamide mononucleotide adenylyltransferase 2 (NMNAT2) acts not only as a NAD synthase involved in axonal maintenance but as a molecular chaperone helping neurons to overcome protein unfolding and protein aggregation. This Primer examines recent research showing that a brain enzyme known to ameliorate excitoxicity and axonal degeneration also acts as a molecular chaperone to prevent protein aggregation.
机译:大脑最令人着迷的特性之一是能够在数十年的生命周期内平稳运行。神经元是不分裂的成熟细胞,专门用于突触的快速电和化学通讯。通常,神经元和突触通过长轴突和树突的复杂乔木化而在高水平的活动中起作用,而这些轴突和树突则可多年来保持健康。另一方面,衰老和与活动有关的应力作用于蛋白质机制,使蛋白质展开并易于形成与神经变性相关的病理性聚集体。神经元如何保护免受这些侮辱并在其整个生命中保持健康? Ali和同事现在提出了一种分子机制,通过该机制,烟酰胺单核苷酸腺苷酸转移酶2(NMNAT2)不仅充当了参与轴突维持的NAD合酶,而且还充当了分子伴侣,帮助神经元克服了蛋白质的展开和蛋白质的聚集。本入门手册检查了最近的研究,该研究表明已知可改善兴奋性毒性和轴突变性的脑酶也可作为分子伴侣来防止蛋白质聚集。

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