Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, TX, USA.
Department of Molecular and Human Genetics, Human Genome Sequencing Center, Baylor College of Medicine, Houston, TX, USA.
Sci Rep. 2022 Apr 2;12(1):5575. doi: 10.1038/s41598-022-09530-0.
SPATA7, an early onset LCA3 retinal disease gene, encodes a putative scaffold protein that is essential for the proper assembly of the connecting cilium (CC) complex in photoreceptors. Previous studies have shown that SPATA7 interacts with other photoreceptor-specific ciliary proteins, such as RPGR and RPGRIP1, and maintains the integrity of CC integrity. However, although it is known that Spata7 is required for early formation of the CC, it is unclear if Spata7 is also required for the maintenance of the CC. To investigate Spata7 function in the retina at the adult stage, loss of function was induced in the adult retina upon tamoxifen induction of an inducible Spata7 knockout allele (Spata7; UbcCreERT2/). The phenotype of mutant retina was characterized by a combination of histology, immunobiochemistry, and electroretinography (ERG). Our results demonstrated that Spata7 is also essential for maintaining the integrity of the mature retinal CC. Loss of Spata7 in adults caused phenotypes similar to those seen in germline mutant mice, including photoreceptor cell degeneration and defective ERG responses. Close examination of the CC revealed significantly shortened NPHP1 length as a result of Spata7 deletion. Furthermore, mislocalization of rhodopsin, leading to ER stress-mediated apoptosis, was observed in the retinal layers. Our results indicate that Spata7 is required not only for the establishment but also for the maintenance of the CC of photoreceptors.
SPATA7,一种早发性 LCA3 视网膜疾病基因,编码一种假定的支架蛋白,对于光感受器中连接纤毛(CC)复合物的正确组装至关重要。先前的研究表明,SPATA7 与其他光感受器特异性纤毛蛋白相互作用,如 RPGR 和 RPGRIP1,并维持 CC 完整性。然而,尽管已知 Spata7 对于 CC 的早期形成是必需的,但尚不清楚 Spata7 是否对于 CC 的维持也是必需的。为了研究 Spata7 在成年视网膜中的功能,在成年视网膜中诱导诱导型 Spata7 敲除等位基因(Spata7; UbcCreERT2/)的他莫昔芬诱导后,诱导 Spata7 功能丧失。突变体视网膜的表型通过组织学、免疫生物化学和视网膜电图(ERG)进行了表征。我们的结果表明,Spata7 对于维持成熟视网膜 CC 的完整性也是必需的。成年时 Spata7 的缺失导致与生殖系突变小鼠相似的表型,包括光感受器细胞变性和 ERG 反应缺陷。对 CC 的仔细检查显示,由于 Spata7 的缺失,NPHP1 的长度明显缩短。此外,还观察到视紫红质的定位错误,导致 ER 应激介导的细胞凋亡。我们的结果表明,Spata7 不仅对于 CC 的建立是必需的,而且对于其维持也是必需的。