Institute of Molecular Genetics, National Research Centre "Kurchatov Institute", 123182 Moscow, Russia.
Skolkovo Institute of Science and Technology, 121205 Moscow, Russia.
Int J Mol Sci. 2023 Jan 21;24(3):2166. doi: 10.3390/ijms24032166.
The microtubule-associated conserved protein tau has attracted significant attention because of its essential role in the formation of pathological changes in the nervous system, which can reduce longevity. The study of the effects caused by tau dysfunction and the molecular mechanisms underlying them is complicated because different forms of tau exist in humans and model organisms, and the changes in protein expression can be multidirectional. In this article, we show that an increase in the expression of the main isoform of the melanogaster tau protein in the nervous system has differing effects on lifespan depending on the sex of individuals but has no effect on the properties of the nervous system, in particular, the synaptic activity and distribution of another microtubule-associated protein, Futsch, in neuromuscular junctions. Reduced expression of tau in the nervous system does not affect the lifespan of wild-type flies, but it does increase the lifespan dramatically shortened by overexpression of the gene encoding the GSK3 (Glycogen Synthase Kinase 3) protein kinase, which is one of the key regulators of tau phosphorylation levels. This effect is accompanied by the normalization of the Futsch protein distribution impaired by overexpression. The results presented in this article demonstrate that multidirectional changes in expression can lead to effects that depend on the sex of individuals and the expression level of GSK3.
微管相关保守蛋白 tau 因其在神经系统病理性变化形成中的重要作用而受到极大关注,这种变化会降低寿命。tau 功能障碍引起的影响及其潜在的分子机制的研究很复杂,因为 tau 以不同的形式存在于人类和模式生物中,并且蛋白质表达的变化可能是多方向性的。在本文中,我们表明,在神经系统中增加主要的 tau 蛋白异构体的表达会根据个体的性别产生不同的寿命影响,但对神经系统的特性没有影响,特别是在神经肌肉接头中,另一种微管相关蛋白 Futsch 的突触活性和分布没有影响。tau 在神经系统中的表达减少不会影响野生型苍蝇的寿命,但它会显著延长因过度表达编码糖原合成酶激酶 3 (GSK3) 蛋白激酶的 基因而大大缩短的寿命,GSK3 是 tau 磷酸化水平的关键调节剂之一。这种效应伴随着因过度表达而受损的 Futsch 蛋白分布的正常化。本文呈现的结果表明,tau 表达的多方向性变化会导致依赖于个体性别和 GSK3 表达水平的影响。