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Inpp5e对光感受器外段的维持至关重要。

Inpp5e Is Critical for Photoreceptor Outer Segment Maintenance.

作者信息

Gupta Mohona, Lewis Tylor R, Stuck Michael W, Spencer William J, Klementieva Natalia V, Arshavsky Vadim Y, Pazour Gregory J

出版信息

bioRxiv. 2024 Nov 12:2024.08.27.609873. doi: 10.1101/2024.08.27.609873.

Abstract

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 a reduction in the size and prevalence of the actin network at the site of new disc morphogenesis and the occasional formation of membrane whorls instead of discs in a subset of cells. 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.

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,这是乔伯特综合征和MORM综合征的一部分,也可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,并阻止光感受器外段的形成。为了进一步探索Inpp5e在光感受器中的功能,我们构建了小鼠Inpp5e的条件性和诱导性敲除模型,其中该基因在外段形成过程中或外段完全形成后被删除。在这两种情况下,Inpp5e的缺失都会导致光感受器外段形态出现严重缺陷,并最终导致光感受器细胞丢失。主要的形态学缺陷包括外段缩短以及外段基部新形成的盘状结构数量减少。这伴随着高尔基体的结构异常、视紫红质定位错误以及细胞外囊泡的积累。此外,敲除细胞在新盘状结构形态发生部位的肌动蛋白网络大小和普遍性降低,并且在一部分细胞中偶尔会形成膜涡旋而不是盘状结构。总之,这些数据表明Inpp5e在维持外段方面起着关键作用,外段更新的正常过程依赖于这种酶的活性。

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