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突变型Ahi1影响斑马鱼视网膜轴突投射 毒性功能获得。

Mutant Ahi1 Affects Retinal Axon Projection in Zebrafish Toxic Gain of Function.

作者信息

Zhu Louyin, Chen Laiqiang, Yan Lingya, Perkins Brian D, Li Shihua, Li Baoming, Xu Hong A, Li Xiao-Jiang

机构信息

School of Life Sciences and Institute of Life Science, Nanchang University, Nanchang, China.

Jiangxi Provincial Collaborative Innovation Center for Cardiovascular, Digestive and Neuropsychiatric Diseases, Nanchang, China.

出版信息

Front Cell Neurosci. 2019 Mar 21;13:81. doi: 10.3389/fncel.2019.00081. eCollection 2019.

Abstract

Joubert syndrome (JBTS) is an inherited autosomal recessive disorder associated with cerebellum and brainstem malformation and can be caused by mutations in the Abelson helper integration site-1 (AHI1) gene. Although AHI1 mutations in humans cause abnormal cerebellar development and impaired axonal decussation in JBTS, these phenotypes are not robust or are absent in various mouse models with Ahi1 mutations. AHI1 contains an N-terminal coiled-coil domain, multiple WD40 repeats, and a C-terminal Src homology 3 (SH3) domain, suggesting that AHI1 functions as a signaling or scaffolding protein. Since most mutations in humans can result in truncated AHI1 proteins lacking WD40 repeats and the SH3 domain, it remains unclear whether mutant AHI1 elicits toxicity a gain-of-function mechanism by the truncated AHI1. Because Ahi1 in zebrafish and humans share a similar N-terminal region with a coiled-coil domain that is absent in mouse Ahi1, we used zebrafish as a model to investigate whether Ahi1 mutations could affect axonal decussation. Using hybridization, we found that is highly expressed in zebrafish ocular tissues, especially in retina, allowing us to examine its effect on retinal ganglion cell (RGC) projection and eye morphology. We injected a morpholino to zebrafish embryos, which can generate mutant Ahi1 lacking the intact WD40 repeats, and found RGC axon misprojection and ocular dysplasia in 4 dpf (days post-fertilization) larvae after the injection. However, null zebrafish showed normal RGC axon projection and ocular morphology. We then used CRISPR/Cas9 to generate truncated ahi1 and also found similar defects in the RGC axon projection as seen in those injected with ahi1 morpholino. Thus, the aberrant retinal axon projection in zebrafish is caused by the presence of mutant ahi1 rather than the loss of ahi1, suggesting that mutant Ahi1 may affect axonal decussation toxic gain of function.

摘要

乔伯特综合征(JBTS)是一种常染色体隐性遗传病,与小脑和脑干畸形相关,可由阿贝尔森辅助整合位点1(AHI1)基因突变引起。虽然人类中的AHI1突变会导致乔伯特综合征患者小脑发育异常和轴突交叉受损,但在各种携带Ahi1突变的小鼠模型中,这些表型并不明显或不存在。AHI1包含一个N端卷曲螺旋结构域、多个WD40重复序列和一个C端Src同源结构域3(SH3),这表明AHI1作为一种信号蛋白或支架蛋白发挥作用。由于人类中的大多数突变会导致缺乏WD40重复序列和SH3结构域的截短型AHI1蛋白,目前尚不清楚突变型AHI1是否通过截短型AHI1的功能获得机制引发毒性。因为斑马鱼和人类的Ahi1在N端有一个相似的带有卷曲螺旋结构域的区域,而小鼠Ahi1中没有,所以我们以斑马鱼为模型来研究Ahi1突变是否会影响轴突交叉。通过原位杂交,我们发现Ahi1在斑马鱼眼部组织中高度表达,尤其是在视网膜中,这使我们能够研究其对视网膜神经节细胞(RGC)投射和眼睛形态的影响。我们向斑马鱼胚胎注射了吗啉代寡核苷酸,它可以产生缺乏完整WD40重复序列的突变型Ahi1,并且发现在注射后4天的幼鱼(受精后天数)中出现RGC轴突投射错误和眼部发育异常。然而,Ahi1基因敲除的斑马鱼显示出正常的RGC轴突投射和眼部形态。然后我们使用CRISPR/Cas9技术产生截短型ahi1,并且在RGC轴突投射中也发现了与注射ahi1吗啉代寡核苷酸的斑马鱼类似的缺陷。因此,斑马鱼中异常的视网膜轴突投射是由突变型ahi1的存在而非ahi1的缺失引起的,这表明突变型Ahi1可能通过毒性功能获得影响轴突交叉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb7c/6438259/a498163fa066/fncel-13-00081-g0001.jpg

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