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Identification and Functional Analysis of the Vision-Specific BBS3 (ARL6) Long Isoform

机译:视觉特定的BBS3(ARL6)长异构体的鉴定和功能分析

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摘要

Bardet-Biedl Syndrome (BBS) is a heterogeneous syndromic form of retinal degeneration. We have identified a novel transcript of a known BBS gene, BBS3 (ARL6), which includes an additional exon. This transcript, BBS3L, is evolutionally conserved and is expressed predominantly in the eye, suggesting a specialized role in vision. Using antisense oligonucleotide knockdown in zebrafish, we previously demonstrated that bbs3 knockdown results in the cardinal features of BBS in zebrafish, including defects to the ciliated Kupffer's Vesicle and delayed retrograde melanosome transport. Unlike bbs3, knockdown of bbs3L does not result in Kupffer's Vesicle or melanosome transport defects, rather its knockdown leads to impaired visual function and mislocalization of the photopigment green cone opsin. Moreover, BBS3L RNA, but not BBS3 RNA, is sufficient to rescue both the vision defect as well as green opsin localization in the zebrafish retina. In order to demonstrate a role for Bbs3L function in the mammalian eye, we generated a Bbs3L-null mouse that presents with disruption of the normal photoreceptor architecture. Bbs3L-null mice lack key features of previously published Bbs-null mice, including obesity. These data demonstrate that the BBS3L transcript is required for proper retinal function and organization.
机译:Bardet-Biedl综合征(BBS)是视网膜变性的异质综合征形式。我们已经确定了一个已知的BBS基因,BBS3(ARL6),其中包括一个额外的外显子的新型转录本。该转录本,BBS3L,在进化上是保守的,主要在眼睛中表达,提示其在视觉中的特殊作用。使用斑马鱼中的反义寡核苷酸敲低,我们以前证明了bbs3敲低导致斑马鱼BBS的基本特征,包括纤毛库普弗囊泡的缺陷和延迟的逆行黑素体运输。与bbs3不同,敲低bbs3L不会导致Kupffer的囊泡或黑素体运输缺陷,相反,敲低bbs3L会导致视觉功能受损和光色素绿锥视蛋白的定位错误。此外,BBS3L RNA,而不是BBS3 RNA,足以挽救斑马鱼视网膜中的视力缺陷和绿色视蛋白。为了证明Bbs3L功能在哺乳动物眼中的作用,我们生成了一个Bbs3L-null小鼠,它破坏了正常的感光细胞结构。 Bbs3L-null小鼠缺乏先前发表的Bbs-null小鼠的关键特征,包括肥胖。这些数据表明,BBS3L转录本是适当的视网膜功能和组织所必需的。

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