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Ruthenium-caged antisense morpholinos for regulating gene expression in zebrafish embryos

机译:钌笼形反义吗啉代物调控斑马鱼胚胎中的基因表达

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摘要

Photochemical approaches afford high spatiotemporal control over molecular structure and function, for broad applications in materials and biological science. Here, we present the first example of a visible light responsive ruthenium-based photolinker, Ru(bipyridine)2(3-ethynylpyridine)2 (RuBEP), which was reacted stoichiometrically with a 25mer DNA or morpholino (MO) oligonucleotide functionalized with 3′ and 5′ terminal azides, via Cu(i)-mediated [3+2] Huisgen cycloaddition reactions. RuBEP-caged circular morpholinos (Ru-MOs) targeting two early developmental zebrafish genes, chordin and notail, were synthesized and tested in vivo. One-cell-stage zebrafish embryos microinjected with Ru-MO and incubated in the dark for 24 h developed normally, consistent with caging, whereas irradiation at 450 nm dissociated one 3-ethynylpyridine ligand (Φ = 0.33) and uncaged the MO to achieve gene knockdown. As demonstrated, Ru photolinkers provide a versatile method for controlling structure and function of biopolymers.
机译:光化学方法提供了对分子结构和功能的高度时空控制,可广泛用于材料和生物科学中。在这里,我们介绍可见光响应的基于钌的光敏交联剂Ru(联吡啶)2(3-乙炔基吡啶)2(RuBEP)的第一个例子,该化合物与25mer DNA或经3'功能化的吗啉代(MO)寡核苷酸化学计量反应和5'末端叠氮化物,经由Cu(i)介导的[3 + 2] Huisgen环加成反应。合成并测试了在RuBEP笼中靶向两个早期发育斑马鱼基因chordin和notail的环状吗啉代(Ru-MOs)。显微注射Ru-MO并在黑暗中孵育24 h的单细胞阶段斑马鱼胚胎正常发育,与笼养相符,而在450 nm照射下解离了一个3-乙炔基吡啶配体(Φ= 0.33)并解开MO以获得基因击倒。如所证明的,Ru光连接剂提供了控制生物聚合物的结构和功能的通用方法。

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