Institute of Translational Biomedicine, Saint Petersburg State University, Saint Petersburg, 199034, Russia.
Sechenov Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Sciences, Saint Petersburg, 194223, Russia.
Sci Rep. 2021 Nov 29;11(1):23092. doi: 10.1038/s41598-021-02289-w.
Classical monoamines are well-known modulators of sensorimotor neural networks. However, the role of trace amines and their receptors in sensorimotor function remains unexplored. Using trace amine-associated receptor 5 knockout (TAAR5-KO) mice, that express beta-galactosidase mapping its localization, we observed TAAR5 expression in the Purkinje cells of the cerebellum and the medial vestibular nucleus, suggesting that TAAR5 might be involved in the vestibular and motor control. Accordingly, in various behavioral tests, TAAR5-KO mice demonstrated lower endurance, but better coordination and balance compared to wild-type controls. Furthermore, we found specific changes in striatal local field potentials and motor cortex electrocorticogram, such as a decrease in delta and an increase in theta oscillations of power spectra, respectively. The obtained data indicate that TAAR5 plays a considerable role in regulation postural stability, muscle force, balance, and motor coordination during active movements, likely via modulation of monoaminergic systems at different levels of sensorimotor control involving critical brain areas such as the brainstem, cerebellum, and forebrain.
经典单胺类物质是传感器运动神经网络的已知调节剂。然而,痕量胺及其受体在传感器运动功能中的作用仍未得到探索。使用表达β-半乳糖苷酶以绘制其定位的痕量胺相关受体 5 敲除 (TAAR5-KO) 小鼠,我们观察到 TAAR5 在小脑浦肯野细胞和内侧前庭核中的表达,表明 TAAR5 可能参与前庭和运动控制。因此,在各种行为测试中,与野生型对照相比,TAAR5-KO 小鼠表现出较低的耐力,但协调和平衡能力更好。此外,我们还发现纹状体局部场电位和运动皮层脑电图的特定变化,例如,频谱的 delta 降低和 theta 振荡增加。所得数据表明,TAAR5 在调节姿势稳定性、肌肉力量、平衡和主动运动中的运动协调方面发挥着重要作用,可能通过调节涉及关键脑区(如脑干、小脑和前脑)的传感器运动控制的不同水平的单胺能系统来实现。