Leamey Catherine A, Merlin Sam, Lattouf Paul, Sawatari Atomu, Zhou Xiaohong, Demel Natasha, Glendining Kelly A, Oohashi Toshitaka, Sur Mriganka, Fässler Reinhard
Department of Physiology, Bosch Institute and School of Medical Sciences, University of Sydney, Sydney, Australia.
PLoS Biol. 2007 Sep;5(9):e241. doi: 10.1371/journal.pbio.0050241.
Binocular vision requires an exquisite matching of projections from each eye to form a cohesive representation of the visual world. Eye-specific inputs are anatomically segregated, but in register in the visual thalamus, and overlap within the binocular region of primary visual cortex. Here, we show that the transmembrane protein Ten_m3 regulates the alignment of ipsilateral and contralateral projections. It is expressed in a gradient in the developing visual pathway, which is consistently highest in regions that represent dorsal visual field. Mice that lack Ten_m3 show profound abnormalities in mapping of ipsilateral, but not contralateral, projections, and exhibit pronounced deficits when performing visually mediated behavioural tasks. It is likely that the functional deficits arise from the interocular mismatch, because they are reversed by acute monocular inactivation. We conclude that Ten_m3 plays a key regulatory role in the development of aligned binocular maps, which are required for normal vision.
双眼视觉需要精确匹配每只眼睛的投射,以形成视觉世界的连贯表征。特定于眼睛的输入在解剖学上是分开的,但在视觉丘脑中是对齐的,并在初级视觉皮层的双眼区域内重叠。在这里,我们表明跨膜蛋白Ten_m3调节同侧和对侧投射的对齐。它在发育中的视觉通路中呈梯度表达,在代表背侧视野的区域始终最高。缺乏Ten_m3的小鼠在同侧投射的映射中表现出严重异常,但对侧投射没有,并且在执行视觉介导的行为任务时表现出明显缺陷。功能缺陷可能源于两眼间的不匹配,因为它们通过急性单眼失活而得到逆转。我们得出结论,Ten_m3在正常视觉所需的对齐双眼图谱的发育中起关键调节作用。