Krizaj David, Copenhagen David R
Dept of Physiology, University of California San Francisco School of Medicine, San Francisco, CA 94143-0730, USA.
Front Biosci. 2002 Sep 1;7:d2023-44. doi: 10.2741/A896.
In this review we describe some of the remarkable and intricate mechanisms through which the calcium ion (Ca2+) contributes to detection, transduction and synaptic transfer of light stimuli in rod and cone photoreceptors. The function of Ca2+ is highly compartmentalized. In the outer segment, Ca2+ controls photoreceptor light adaptation by independently adjusting the gain of phototransduction at several stages in the transduction chain. In the inner segment and synaptic terminal, Ca2+ regulates cells' metabolism, glutamate release, cytoskeletal dynamics, gene expression and cell death. We discuss the mechanisms of Ca2+ entry, buffering, sequestration, release from internal stores and Ca2+ extrusion from both outer and inner segments, showing that these two compartments have little in common with respect to Ca2+ homeostasis. We also investigate the various roles played by Ca2+ as an integrator of intracellular signaling pathways, and emphasize the central role played by Ca2+ as a second messenger in neuromodulation of photoreceptor signaling by extracellular ligands such as dopamine, adenosine and somatostatin. Finally, we review the intimate link between dysfunction in photoreceptor Ca2+ homeostasis and pathologies leading to retinal dysfunction and blindness.
在本综述中,我们描述了钙离子(Ca2+)通过一些显著且复杂的机制,在视杆和视锥光感受器中对光刺激的检测、转导及突触传递所起的作用。Ca2+的功能高度区域化。在光感受器的外段,Ca2+通过在转导链的多个阶段独立调节光转导增益来控制光感受器的光适应。在光感受器的内段和突触终末,Ca2+调节细胞代谢、谷氨酸释放、细胞骨架动力学、基因表达及细胞死亡。我们讨论了Ca2+进入、缓冲、隔离、从内部储存释放以及从外段和内段排出的机制,结果表明这两个区域在Ca2+稳态方面几乎没有共同之处。我们还研究了Ca2+作为细胞内信号通路整合者所发挥的各种作用,并强调Ca2+作为细胞外配体(如多巴胺、腺苷和生长抑素)对光感受器信号进行神经调节时作为第二信使所起的核心作用。最后,我们综述了光感受器Ca2+稳态功能障碍与导致视网膜功能障碍和失明的病理之间的密切联系。