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慢poke钙激活钾通道转基因对生理和行为缺陷的互补作用。

Complementation of physiological and behavioral defects by a slowpoke Ca(2+) -activated K(+) channel transgene.

作者信息

Brenner R, Yu J Y, Srinivasan K, Brewer L, Larimer J L, Wilbur J L, Atkinson N S

机构信息

Section of Neurobiology and the Institute for Cellular and Molecular Biology, The University of Texas at Austin, 78712-1064, USA.

出版信息

J Neurochem. 2000 Sep;75(3):1310-9. doi: 10.1046/j.1471-4159.2000.751310.x.

Abstract

The Drosophila slowpoke gene encodes a large conductance calcium-activated potassium channel used in neurons, muscle, and some epithelial cells. Tissue-specific transcriptional promoters and alternative mRNA splicing generate a large array of transcripts. These distinct transcripts are thought to tailor the properties of the channel to the requirements of the cell. Presumably, a single splice variant cannot satisfy the specific needs of all cell types. To test this, we examined whether a single slowpoke splice variant was capable of complementing all slowpoke behavioral phenotypes. Null mutations in slowpoke cause animals to be semiflightless and to manifest an inducible "sticky-feet" phenotype. The well-characterized slowpoke transcriptional control region was used to direct the expression of a single slowpoke splice variant (cDNA H13) in transgenic flies. The endogenous gene in these flies had been inactivated by the slo(4) mutation. Action-potential recordings and voltage-clamp recordings demonstrated the production of functional channels from the transgene. The transgene completely complemented the flight defect, but not the sticky-feet phenotype. We conclude that distinct slowpoke channel isoforms, produced by alternative splicing, are not interchangeable and are required for proper function of different cell types.

摘要

果蝇慢poke基因编码一种用于神经元、肌肉和一些上皮细胞的大电导钙激活钾通道。组织特异性转录启动子和可变mRNA剪接产生大量转录本。这些不同的转录本被认为是根据细胞的需求来调整通道的特性。据推测,单一的剪接变体无法满足所有细胞类型的特定需求。为了验证这一点,我们研究了单一的慢poke剪接变体是否能够弥补所有慢poke行为表型。慢poke基因的无效突变会导致动物半无法飞行,并表现出一种可诱导的“粘脚”表型。利用特征明确的慢poke转录控制区域,在转基因果蝇中指导单一慢poke剪接变体(cDNA H13)的表达。这些果蝇中的内源基因已被slo(4)突变失活。动作电位记录和电压钳记录表明转基因产生了功能性通道。转基因完全弥补了飞行缺陷,但没有弥补粘脚表型。我们得出结论,由可变剪接产生的不同慢poke通道亚型不可互换,并且是不同细胞类型正常功能所必需的。

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