Muniz Albert, Villazana-Espinoza Elia T, Hatch Andrea L, Trevino Simon G, Allen Donald M, Tsin Andrew T C
Department of Biology, University of Texas at San Antonio, One UTSA Circle, San Antonio, TX 78249, USA.
Exp Eye Res. 2007 Aug;85(2):175-84. doi: 10.1016/j.exer.2007.05.003. Epub 2007 May 24.
The visual processing of humans is primarily reliant upon the sensitivity of cone photoreceptors to light during daylight conditions. This underscores the importance of understanding how cone photoreceptors maintain the ability to detect light. The vertebrate retina consists of a combination of both rod and cone photoreceptors. Subsequent to light exposure, both rod and cone photoreceptors are dependent upon the recycling of vitamin A to regenerate photopigments, the proteins responsible for detecting light. Metabolic processing of vitamin A in support of rod photopigment renewal, the so-called "rod visual cycle", is well established. However, the metabolic processing of vitamin A in support of cone photopigment renewal remains a challenge for characterization in the recently discovered "cone visual cycle". In this review we summarize the research that has defined the rod visual cycle and our current concept of the novel cone visual cycle. Here, we highlight the research that supports the existence of a functional cone-specific visual cycle: the identification of novel enzymatic activities that contribute to retinoid recycling, the observation of vitamin A recycling in cone-dominated retinas, and the localization of some of these activities to the Müller cell. In the opinions of the authors, additional research on the possible interactions between these two visual cycles in the duplex retina is needed to understand visual detection in the human retina.
在白天条件下,人类的视觉处理主要依赖于视锥光感受器对光的敏感性。这凸显了了解视锥光感受器如何保持检测光的能力的重要性。脊椎动物的视网膜由视杆和视锥光感受器组合而成。在光照之后,视杆和视锥光感受器都依赖于维生素A的循环利用来再生光色素,即负责检测光的蛋白质。支持视杆光色素更新的维生素A代谢过程,即所谓的“视杆视觉循环”,已得到充分证实。然而,在最近发现的“视锥视觉循环”中,支持视锥光色素更新的维生素A代谢过程的特征描述仍然是一个挑战。在这篇综述中,我们总结了定义视杆视觉循环的研究以及我们目前对新型视锥视觉循环的概念。在这里,我们强调支持功能性视锥特异性视觉循环存在的研究:有助于类视黄醇循环的新型酶活性的鉴定、在视锥主导的视网膜中维生素A循环的观察以及其中一些活性在米勒细胞中的定位。作者认为,需要对双重视网膜中这两个视觉循环之间可能的相互作用进行更多研究,以了解人类视网膜中的视觉检测。