Departments of Pathology and Cell Biology, Neuroscience, and Ophthalmology, Mortimer B. Zuckerman Mind Brain Behavior Institute, Columbia University, Jerome L. Greene Science Center, 3227 Broadway, Room L3-043, Quad 3C, New York, NY, 10027, USA.
Eur J Neurosci. 2019 Apr;49(7):913-927. doi: 10.1111/ejn.14396. Epub 2019 Apr 23.
In albinism of all species, perturbed melanin biosynthesis in the eye leads to foveal hypoplasia, retinal ganglion cell misrouting, and, consequently, altered binocular vision. Here, written before he died, Ray Guillery chronicles his discovery of the aberrant circuitry from eye to brain in the Siamese cat. Ray's characterization of visual pathway anomalies in this temperature sensitive mutation of tyrosinase and thus melanin synthesis in domestic cats opened the exploration of albinism and simultaneously, a genetic approach to the organization of neural circuitry. I follow this account with a remembrance of Ray's influence on my work. Beginning with my postdoc research with Ray on the cat visual pathway, through my own work on the mechanisms of retinal axon guidance in the developing mouse, Ray and I had a continuous and rich dialogue about the albino visual pathway. I will present the questions Ray posed and clues we have to date on the still-elusive link between eye pigment and the proper balance of ipsilateral and contralateral retinal ganglion cell projections to the brain.
在所有物种的白化病中,眼睛中黑色素生物合成的紊乱导致中心凹发育不良、视网膜神经节细胞错位,从而导致双眼视觉改变。在这里,雷·吉利(Ray Guillery)在去世前记录了他在暹罗猫中发现的从眼睛到大脑的异常电路。雷对这种酪氨酸酶和黑色素合成的温度敏感突变中视觉通路异常的描述,为白化病的探索开辟了道路,同时也为神经回路的组织提供了一种遗传方法。我在这篇文章中回忆了雷对我工作的影响。从我在猫视觉通路上与雷的博士后研究开始,到我自己在发育中的老鼠视网膜轴突导向机制上的工作,雷和我一直在就白化病视觉通路进行持续而丰富的对话。我将介绍雷提出的问题,以及我们迄今为止在眼睛色素与同侧和对侧视网膜神经节细胞向大脑投射的适当平衡之间仍然难以捉摸的联系方面的线索。