UCD School of Biomolecular and Biomedical Science, University College Dublin, Dublin, Ireland; UCD Conway Institute, University College Dublin, Dublin, Ireland.
Vision Res. 2023 Sep;210:108270. doi: 10.1016/j.visres.2023.108270. Epub 2023 Jun 13.
The eye is particularly suited to gene therapy due to its accessibility, immunoprivileged state and compartmentalised structure. Indeed, many clinical trials are underway for therapeutic gene strategies for inherited retinal degenerations (IRDs). However, as there are currently 281 genes associated with IRD, there is still a large unmet need for effective therapies for the majority of IRD-causing genes. In humans, RAB28 null and hypomorphic alleles cause autosomal recessive cone-rod dystrophy (arCORD). Previous work demonstrated that restoring wild type zebrafish Rab28 via germline transgenesis, specifically in cone photoreceptors, is sufficient to rescue the defects in outer segment phagocytosis (OSP) observed in zebrafish rab28 knockouts (KO). This rescue suggests that gene therapy for RAB28-associated CORD may be successful by RAB28 gene restoration to cones. It also inspired us to critically consider the scenarios in which zebrafish can provide informative preclinical data for development of gene therapies. Thus, this review focuses on RAB28 biology and disease, and delves into both the opportunities and limitations of using zebrafish as a model for both gene therapy development and as a diagnostic tool for patient variants of unknown significance (VUS).
眼睛因其可及性、免疫特权状态和分隔结构,特别适合基因治疗。事实上,许多用于遗传性视网膜退行性疾病(IRDs)的治疗性基因策略的临床试验正在进行中。然而,由于目前与 IRD 相关的基因有 281 个,对于大多数导致 IRD 的基因,仍然存在着大量未满足的有效治疗需求。在人类中,RAB28 缺失和功能降低等位基因导致常染色体隐性锥-杆营养不良(arCORD)。先前的工作表明,通过种系转基因,特别是在锥光感受器中,恢复野生型斑马鱼 Rab28,足以挽救在斑马鱼 rab28 敲除(KO)中观察到的外节吞噬(OSP)缺陷。这种挽救表明,通过将 RAB28 基因恢复到锥体中,针对 RAB28 相关 CORD 的基因治疗可能是成功的。这也促使我们批判性地考虑,在哪些情况下,斑马鱼可以为基因治疗的开发提供有意义的临床前数据。因此,本综述重点介绍了 RAB28 的生物学和疾病,并深入探讨了利用斑马鱼作为基因治疗开发的模型以及作为未知意义变异(VUS)患者的诊断工具的机会和局限性。