Cook B, Minke B
Department of Physiology, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
Cell Calcium. 1999 Feb;25(2):161-71. doi: 10.1054/ceca.1998.0018.
Phototransduction in Drosophila is mediated by the ubiquitous phosphoinositide cascade, leading to opening of the TRP and TRPL channels, which are prototypical members of a novel class of membrane proteins. Drosophila mutants lacking the TRP protein display a response to light that declines to the dark level during illumination. It has recently been suggested that this response inactivation results from a negative feedback by calcium-calmodulin, leading to closure of the TRPL channels. It is also suggested that in contrast to other phosphoinositide-mediated systems, Ca2+ release from internal stores is neither involved in channel activation nor in phototransduction in general. We now show that inactivation of the light response in trp photoreceptors is enhanced upon reduction of the intracellular Ca2+ concentration. Furthermore, in Ca(2+)-free medium, when there is no Ca2+ influx into the photoreceptors, we demonstrate a significant elevation of intracellular Ca2+ upon illumination. This elevation correlates with ability of the cells to respond to light. Accordingly, malfunctioning of Ca2+ stores, either by Ca2+ deprivation or by application of the Ca2+ pump inhibitor, thapsigargin, confers a trp phenotype on wild type flies. The results indicate that the response inactivation in trp cells results from Ca2+ deficiency rather than from Ca(2+)-dependent negative feedback. The results also indicate that there is light-induced release of Ca2+ from intracellular stores. Furthermore, the response to light is correlated to Ca2+ release, and normal function of the stores is required for prolonged excitation. We suggest that phototransduction in Drosophila depends on Ca(2+)-release mediated signalling and that TRP is essential for the normal function of this process.
果蝇中的光转导由普遍存在的磷酸肌醇级联反应介导,导致TRP和TRPL通道开放,这两种通道是一类新型膜蛋白的典型成员。缺乏TRP蛋白的果蝇突变体在光照期间对光的反应会下降至黑暗水平。最近有人提出,这种反应失活是由钙 - 钙调蛋白的负反馈引起的,导致TRPL通道关闭。也有人提出,与其他磷酸肌醇介导的系统不同,从内部储存库释放Ca2+既不参与通道激活,也不参与一般的光转导。我们现在表明,细胞内Ca2+浓度降低时,trp光感受器中光反应的失活会增强。此外,在无Ca2+的培养基中,当没有Ca2+流入光感受器时,我们证明光照后细胞内Ca2+会显著升高。这种升高与细胞对光的反应能力相关。因此,无论是通过剥夺Ca2+还是应用Ca2+泵抑制剂毒胡萝卜素使Ca2+储存库功能失调,都会使野生型果蝇呈现trp表型。结果表明,trp细胞中的反应失活是由Ca2+缺乏引起的,而不是由Ca2+依赖性负反馈引起的。结果还表明,存在光照诱导的细胞内储存库释放Ca2+。此外,对光的反应与Ca2+释放相关,储存库的正常功能是延长兴奋所必需的。我们认为果蝇中的光转导依赖于Ca2+释放介导的信号传导,并且TRP对于该过程的正常功能至关重要。