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Cav1.4 IT mouse as model for vision impairment in human congenital stationary night blindness type 2

机译:Cav1.4 IT鼠标作为人类先天性固定型夜盲2型视力障碍的模型

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摘要

Mutations in the CACNA1F gene encoding the Cav1.4 Ca2+ channel are associated with X-linked congenital stationary night blindness type 2 (CSNB2). Despite the increasing knowledge about the functional behavior of mutated channels in heterologous systems, the pathophysiological mechanisms that result in vision impairment remain to be elucidated. This work provides a thorough functional characterization of the novel IT mouse line that harbors the gain-of-function mutation I745T reported in a New Zealand CSNB2 family. Electroretinographic recordings in IT mice permitted a direct comparison with human data. Our data supported the hypothesis that a hyperpolarizing shift in the voltage-dependence of channel activation—as seen in the IT gain-of-function mutant—may reduce the dynamic range of photoreceptor activity. Morphologically, the retinal outer nuclear layer in adult IT mutants was reduced in size and cone outer segments appeared shorter. The organization of the outer plexiform layer was disrupted, and synaptic structures of photoreceptors had a variable, partly immature, appearance. The associated visual deficiency was substantiated in behavioral paradigms. The IT mouse line serves as a specific model for the functional phenotype of human CSNB2 patients with gain-of-function mutations and may help to further understand the dysfunction in CSNB.
机译:编码Cav1.4 Ca 2 + 通道的CACNA1F基因突变与X连锁先天性固定性夜盲2型(CSNB2)相关。尽管对异源系统中突变通道的功能行为的了解不断增加,但导致视力障碍的病理生理机制仍有待阐明。这项工作为新型IT小鼠品系提供了全面的功能表征,该品系具有新西兰CSNB2家族报道的功能获得性突变I745T。 IT小鼠的视网膜电图记录可以直接与人类数据进行比较。我们的数据支持以下假设:通道激活的电压依赖性超极化转变(如IT功能获得突变体 所示)可能会降低感光器活动的动态范围。从形态上看,成年IT突变体的视网膜外核层尺寸减小,视锥外段显得更短。外丛状层的组织被破坏,并且感光体的突触结构具有可变的,部分不成熟的外观。相关的视觉缺陷在行为范例中得到证实。 IT小鼠系可作为具有功能获得性突变的人CSNB2患者功能表型的特定模型,并可能有助于进一步了解CSNB的功能障碍。

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