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Drosophila Bestrophin-1 Chloride Current Is Dually Regulated by Calcium and Cell Volume

机译:果蝇Bestrophin-1氯化物电流受钙和细胞体积的双重调节

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Mutations in the human bestrophin-1 (hBest1) gene are responsible for Best vitelliform macular dystrophy, however the mechanisms leading to retinal degeneration have not yet been determined because the function of the bestrophin protein is not fully understood. Bestrophins have been proposed to comprise a new family of Cl~- channels that are activated by Ca~(2+). While the regulation of bestrophin currents has focused on intracellular Ca~(2+), little is known about other pathways/mechanisms that may also regulate bestrophin currents. Here we show that Cl~-currents in Drosophila S2 cells, that we have previously shown are mediated by bestrophins, are dually regulated by Ca~(2+) and cell volume. The bestrophin Cl~- currents were activated in a dose-dependent manner by osmotic pressure differences between the internal and external solutions. The increase in the current was accompanied by cell swelling. The volume-regulated Cl~- current was abolished by treating cells with each of four different RNAi constructs that reduced dBestl expression. The volume-regulated current was rescued by transfecting with dBestl. Furthermore, cells not expressing dBestl were severely depressed in their ability to regulate their cell volume. Volume regulation and Ca~(2+) regulation can occur independendy of one another: the volume-regulated current was activated in the complete absence of Ca~(2+) and the Ca~(2+)-activated current was activated independendy of alterations in cell volume. These two pathways of bestrophin channel activation can interact; intracellular Ca~(2+) potentiates the magnitude of the current activated by changes in cell volume. We conclude that in addition to being regulated by intracellular Ca~(2+), Drosophila bestrophins are also novel members of the volume-regulated anion channel (VRAC) family that are necessary for cell volume homeostasis.
机译:人Bestrophin-1(hBest1)基因的突变是造成最佳的玻璃体黄斑营养不良的原因,但是,由于尚未充分了解Bestrophin蛋白的功能,因此尚未确定导致视网膜变性的机制。已经提出了Bestrophins包括由Ca〜(2+)激活的新的Cl〜-通道家族。虽然最佳鱼腥素电流的调节集中在细胞内Ca〜(2+)上,但对可能也调节最佳鱼腥素电流的其他途径/机制了解甚少。在这里,我们显示果蝇S2细胞中的Cl〜-电流(以前已经显示)是由Bestrophins介导的,并由Ca〜(2+)和细胞体积双重调控。通过内部溶液和外部溶液之间的渗透压差,以剂量依赖的方式激活了最佳卵磷脂Cl-电流。电流的增加伴随着细胞肿胀。通过用降低dBestl表达的四种不同RNAi构建体中的每一种处理细胞,消除了体积调节的Cl-电流。通过用dBestl转染来挽救体积调节的电流。此外,不表达dBestl的细胞调节其细胞体积的能力严重降低。体积调节和Ca〜(2+)调节可以彼此独立发生:在完全不存在Ca〜(2+)的情况下激活体积调节电流,而Ca〜(2+)激活的电流独立于Ca〜(2+)激活。细胞体积的变化。最佳雌激素通道激活的这两个途径可以相互作用。细胞内Ca〜(2+)增强了细胞体积变化激活的电流强度。我们得出的结论是,除了受细胞内Ca〜(2+)调控外,果蝇Bestrophins还是细胞体积动态平衡所必需的体积调节阴离子通道(VRAC)家族的新成员。

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  • 来源
    《Journal of General Physiology》 |2007年第5期|p.513-524|共12页
  • 作者单位

    Department of Cell Biology and Center for Neurodegenerative Disease, Emory University School of Medicine, Atlanta, GA 30322;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生理学;
  • 关键词

  • 入库时间 2022-08-17 23:56:17

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