IF 3.3 3区 生物学 Q3 CELL BIOLOGY Journal of cell science Pub Date : 2025-01-28 DOI:10.1242/jcs.263814
Mohona Gupta, Tylor R Lewis, Michael W Stuck, William J Spencer, Natalia V Klementieva, Vadim Y Arshavsky, Gregory J Pazour
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引用次数: 0

摘要

在人类中,肌醇多磷酸-5-磷酸酶 e(INPP5E)突变会导致视网膜变性,这是朱伯特综合征和 MORM 综合征的一部分,也可能导致非综合征性失明。在小鼠中,突变会导致一系列大脑、肾脏和其他异常,并阻碍感光体外节段的形成。为了进一步探索 Inpp5e 在光感受器中的功能,我们产生了小鼠 Inpp5e 的条件性和诱导性基因敲除,在外节形成过程中或外节完全形成后删除该基因。在这两种情况下,Inpp5e 的缺失都会导致感光体外节形态的严重缺陷,并最终导致感光体细胞的缺失。主要的形态缺陷包括外节缩短和外节基部新形成的圆盘数量减少。与此同时,高尔基体的结构也出现异常,视紫红质错位,细胞外囊泡堆积。此外,基因敲除细胞还显示出肌动蛋白网络的破坏。这些数据共同表明,Inpp5e 在维持外节方面起着关键作用,外节的正常更新过程取决于这种酶的活性。
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Inpp5e Is Critical for Photoreceptor Outer Segment Maintenance.

In humans, inositol polyphosphate-5-phosphatase e (INPP5E) mutations cause retinal degeneration as part of Joubert and MORM syndromes and can also cause non-syndromic blindness. In mice, mutations cause a spectrum of brain, kidney, and other anomalies and prevent the formation of photoreceptor outer segments. To further explore the function of Inpp5e in photoreceptors, we generated conditional and inducible knockouts of mouse Inpp5e where the gene was deleted either during outer segment formation or after outer segments were fully formed. In both cases, the loss of Inpp5e led to severe defects in photoreceptor outer segment morphology and ultimately photoreceptor cell loss. The primary morphological defect consisted of outer segment shortening and reduction in the number of newly forming discs at the outer segment base. This was accompanied by structural abnormalities of the Golgi apparatus, mislocalized rhodopsin, and an accumulation of extracellular vesicles. In addition, knockout cells showed disruption of the actin network. Together, these data demonstrate that Inpp5e plays a critical role in maintaining the outer segment and the normal process of outer segment renewal depends on the activity of this enzyme.

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来源期刊
Journal of cell science
Journal of cell science 生物-细胞生物学
CiteScore
7.30
自引率
2.50%
发文量
393
审稿时长
1.4 months
期刊介绍: Journal of Cell Science publishes cutting-edge science, encompassing all aspects of cell biology.
期刊最新文献
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