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ROP the Drosophila Sec1 homolog interacts with syntaxin and regulates neurotransmitter release in a dosage-dependent manner.

机译:ROP果蝇Sec1同源物与syntaxin相互作用并以剂量依赖的方式调节神经递质的释放。

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摘要

The Sec1 family of proteins is thought to function in both non-neuronal and neuronal secretion, although the precise role of this protein family has not been defined. Here, we study the function of ROP, the Drosophila Sec1 homolog, in neurotransmitter release. Electrophysiological analyses of transgenic lines overexpressing ROP and syntaxin, a presynaptic membrane protein, indicate that ROP interacts with syntaxin in vivo. Characterization of four point mutations in ROP shows that they fall into two phenotypic classes. Two mutations cause a dramatic reduction in both evoked and spontaneous neurotransmitter release. In contrast, the other two mutations reveal an increase in evoked neurotransmission. Our data further show that neurotransmission is highly sensitive to the levels of ROP function. Studies on heterozygote animals indicate that half the amount of wild-type ROP results in a dramatic decrease in evoked and spontaneous exocytosis. Taken together, these results suggest that ROP interacts with syntaxin in vivo and is a rate-limiting regulator of exocytosis that performs both positive and inhibitory functions in neurotransmission.
机译:尽管尚未确定该蛋白家族的确切作用,但认为该蛋白的Sec1家族可在非神经元和神经元分泌中起作用。在这里,我们研究果蝇Sec1同源物ROP在神经递质释放中的功能。对过表达ROP和syntaxin(突触前膜蛋白)的转基因株系的电生理分析表明,ROP在体内与syntaxin相互作用。 ROP中四个点突变的特征表明它们属于两个表型类别。两个突变引起诱发的和自发的神经递质释放的显着降低。相反,其他两个突变表明诱发的神经传递增加。我们的数据进一步表明,神经传递对ROP功能水平高度敏感。对杂合子动物的研究表明,野生型ROP量的一半导致诱发的和自发的胞吐作用显着降低。两者合计,这些结果表明ROP在体内与语法相互作用,并且是胞吐作用的限速调节剂,在神经传递中执行正向和抑制功能。

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