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Conditional targeted cell ablation in zebrafish: a new tool for regeneration studies.

机译:斑马鱼中的条件靶向细胞消融:再生研究的新工具。

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Conditional targeted cell ablation in zebrafish would greatly expand the utility of this genetic model system in developmental and regeneration studies, given its extensive regenerative capabilities. Here, we show that, by combining chemical and genetic tools, one can ablate cells in a temporal- and spatial-specific manner in zebrafish larvae. For this purpose, we used the bacterial Nitroreductase (NTR) enzyme to convert the prodrug Metronidazole (Mtz) into a cytotoxic DNA cross-linking agent. To investigate the efficiency of this system, we targeted three different cell lineages in the heart, pancreas, and liver. Expression of the fusion protein Cyan Fluorescent Protein-NTR (CFP-NTR) under control of tissue-specific promoters allowed us to induce the death of cardiomyocytes, pancreatic beta-cells, and hepatocytes at specific times. Moreover, we have observed that Mtz can be efficiently washed away and that, upon Mtz withdrawal, the profoundly affected tissue can quickly recover. These findings show that the NTR/Mtz system is effective for temporally and spatially controlled cell ablation in zebrafish, thereby constituting a most promising genetic tool to analyze tissue interactions as well as the mechanisms underlying regeneration.
机译:斑马鱼中的条件性靶向细胞消融将大大扩展该遗传模型系统在发育和再生研究中的应用,因为它具有广泛的再生能力。在这里,我们表明,通过结合化学和遗传工具,可以以时间和空间特异性方式消融斑马鱼幼虫中的细胞。为此,我们使用细菌硝基还原酶(NTR)酶将前药甲硝唑(Mtz)转化为具有细胞毒性的DNA交联剂。为了研究该系统的效率,我们针对了心脏,胰腺和肝脏中的三种不同细胞谱系。在组织特异性启动子的控制下,融合蛋白Cyan-fluorescent Protein-NTR(CFP-NTR)的表达使我们能够诱导心肌细胞,胰腺β细胞和肝细胞在特定时间死亡。此外,我们已经观察到Mtz可以被有效洗掉,并且在Mtz撤出后,受到严重影响的组织可以迅速恢复。这些发现表明,NTR / Mtz系统对于在斑马鱼中进行时间和空间控制的细胞消融是有效的,从而构成了一种最有前途的遗传工具,用于分析组织相互作用以及再生机制。

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