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果蝇光感受器细胞中的钙稳态。

Calcium homeostasis in fly photoreceptor cells.

作者信息

Oberwinkler Johannes

机构信息

Department of Neurobiophysics, University of Groningen, The Netherlands.

出版信息

Adv Exp Med Biol. 2002;514:539-83. doi: 10.1007/978-1-4615-0121-3_32.

Abstract

In fly photoreceptor cells, two processes dominate the Ca2+ homeostasis: light-induced Ca2+ influx through members of the TRP family of ion channels, and Ca2+ extrusion by Na+/Ca2+ exchange. Ca2+ release from intracellular stores is quantitatively insignificant. Both, the light-activated channels and the Ca2+-extruding exchangers are located in or close to the rhabdomeric microvilli, small protrusions of the plasma membrane. The microvilli also contain the molecular machinery necessary for generating quantum bumps, short electrical responses caused by the absorption of a single photon. Due to this anatomical arrangement, the light-induced Ca2+ influx results in two separate Ca2+ signals that have different functions: a global, homogeneous increase of the Ca2+ concentration in the cell body, and rapid but large amplitude Ca2+ transients in the microvilli. The global rise of the Ca2+ concentration mediates light adaptation, via regulatory actions on the phototransduction cascade, the voltage-gated K+ channels and small pigment granules controlling the light intensity. The local Ca2+ transients in the microvilli are responsible for shaping the quantum bumps into fast, all-or-nothing events. They achieve this by facilitating strongly the phototransduction cascade at early stages ofthe light response and subsequently inhibiting it. Many molecular targets of these feedback mechanisms have been identified and characterized due to the availability of numerous Drosophila mutant showing defects in the phototransduction.

摘要

在果蝇光感受器细胞中,有两个过程主导着钙离子稳态:一是通过瞬时受体电位(TRP)家族离子通道成员介导的光诱导钙离子内流,二是通过钠钙交换体进行的钙离子外排。从细胞内钙库释放的钙离子在数量上并不显著。光激活通道和钙离子外排交换体均位于横纹肌微绒毛(质膜的小突起)内或其附近。微绒毛还包含产生量子突增(由单个光子吸收引起的短暂电反应)所需的分子机制。由于这种解剖学上的排列,光诱导的钙离子内流会产生两种具有不同功能的独立钙离子信号:一是细胞体中钙离子浓度的整体均匀增加,二是微绒毛中快速但幅度较大的钙离子瞬变。细胞内钙离子浓度的整体升高通过对光转导级联反应、电压门控钾通道以及控制光强度的小色素颗粒的调节作用来介导光适应。微绒毛中的局部钙离子瞬变负责将量子突增塑造为快速的、全或无的事件。它们通过在光反应早期强烈促进光转导级联反应,随后抑制该反应来实现这一点。由于有众多在光转导方面表现出缺陷的果蝇突变体,这些反馈机制的许多分子靶点已被鉴定和表征。

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