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Coordination and fine motor control depend on Drosophila TRPγ

机译:协调和精细运动控制取决于果蝇TRPγ

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Motor coordination is broadly divided into gross and fine motor control, both of which depend on proprioceptive organs. However, the channels that function specifically in fine motor control are unknown. Here we show that mutations in trpγ disrupt fine motor control while leaving gross motor proficiency intact. The mutants are unable to coordinate precise leg movements during walking, and are ineffective in traversing large gaps due to an inability in making subtle postural adaptations that are requisite for this task. TRPγ is expressed in proprioceptive organs, and is required in both neurons and glia for gap crossing. We expressed TRPγ in vitro , and found that its activity is promoted by membrane stretch. A mutation eliminating the Na+/Ca2+ exchanger suppresses the gap-crossing phenotype of trpγ flies. Our findings indicate that TRPγ contributes to fine motor control through mechanical activation in proprioceptive organs, thereby promoting Ca2+ influx, which is required for function.
机译:运动协调大致分为总体运动控制和精细运动控制,两者均取决于本体感受器官。但是,尚不清楚在精细电机控制中专门起作用的通道。在这里,我们显示,trpγ中的突变破坏了精细的运动控制,同时保持了完整的运动能力。这些突变体无法协调步行过程中腿部的精确运动,并且由于无法进行此任务所需的微妙姿势调整而无法有效地穿越大间隙。 TRPγ在本体感受器官中表达,并且在神经元和神经胶质中都需要缺口穿越。我们在体外表达TRPγ,并发现其活性被膜拉伸促进。消除Na + / Ca 2 + 交换子的突变抑制了trpγ蝇的跨表型。我们的发现表明,TRPγ通过本体感受器官中的机械激活有助于精细的运动控制,从而促进功能所需的Ca 2 + 内流。

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