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剪接体复合物失调诱导 sf3b4 缺失斑马鱼产生类似视网膜色素变性的特征。

Dysregulation of Spliceosomes Complex Induces Retinitis Pigmentosa-Like Characteristics in sf3b4-Depleted Zebrafish.

机构信息

Laboratory of Developmental Disorders and Toxicology, Center for Promotion of International Education and Research, Faculty of Agriculture, Kyushu University, Fukuoka, Japan; Research Center for Pre-clinical and Clinical Medicine, National Research and Innovation Agency, Republic of Indonesia, Cibinong, Indonesia.

Laboratory of Aquatic Molecular Developmental Biology, Center for Promotion of International Education and Research, Faculty of Agriculture, Kyushu University, Fukuoka, Japan.

出版信息

Am J Pathol. 2023 Sep;193(9):1223-1233. doi: 10.1016/j.ajpath.2023.05.008. Epub 2023 May 30.

Abstract

The SF3B4 gene encodes a highly conserved protein that plays a critical role in mRNA splicing. Mutations in this gene are known to cause Nager syndrome, a rare craniofacial disorder. Although SF3B4 expression is detected in the optic vesicle before it is detected in the limb and somite, the role of SF3B4 in the eye is not well understood. This study investigated the function of sf3b4 in the retina by performing transcriptome profiles, immunostaining, and behavioral analysis of sf3b4 mutant zebrafish. Results from this study suggest that dysregulation of the spliceosome complex affects not only craniofacial development but also retinogenesis. Zebrafish lacking functional sf3b4 displayed characteristics similar to retinitis pigmentosa (RP), marked by severe retinal pigment epithelium defects and rod degeneration. Pathway analysis revealed altered retinol metabolism and retinoic acid signaling in the sf3b4 mutants. Supplementation of retinoic acid rescued key cellular phenotypes observed in the sf3b4 mutants, offering potential therapeutic strategies for RP in the future. In conclusion, this study sheds light on the previously unknown role of SF3B4 in retinogenesis and provides insights into the underlying mechanisms of RP.

摘要

SF3B4 基因编码一种高度保守的蛋白质,在 mRNA 剪接中发挥关键作用。该基因的突变已知会导致 Nager 综合征,这是一种罕见的颅面畸形疾病。尽管 SF3B4 在肢芽和体节之前就在视囊泡中检测到,但 SF3B4 在眼睛中的作用尚未得到很好的理解。本研究通过对 sf3b4 突变斑马鱼进行转录组谱分析、免疫染色和行为分析,研究了 sf3b4 在视网膜中的功能。本研究结果表明,剪接体复合物的失调不仅影响颅面发育,还影响视网膜发生。缺乏功能性 sf3b4 的斑马鱼表现出类似于色素性视网膜炎 (RP) 的特征,表现为严重的视网膜色素上皮缺陷和杆状细胞变性。通路分析显示 sf3b4 突变体中视黄醇代谢和视黄酸信号转导发生改变。视黄酸的补充挽救了 sf3b4 突变体中观察到的关键细胞表型,为未来的 RP 提供了潜在的治疗策略。总之,本研究揭示了 SF3B4 在视网膜发生中的先前未知作用,并为 RP 的潜在机制提供了新的见解。

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