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首页> 外文期刊>Biochemistry >Clicking a Fish: Click Chemistry of Different Biomolecules in Danio rerio
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Clicking a Fish: Click Chemistry of Different Biomolecules in Danio rerio

机译:点击鱼:在 Danio Rerio 中单击不同生物分子的化学

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Click chemistry has found remarkable applications in imaging biomacromolecules in cellular systems and even organisms. Over the past few years, bioorthogonal click reactions have been improved and tailored for specific applications, allowing the selective labeling of biomolecules like DNA, RNA, proteins, glycans, and lipids. The zebrafish, Danio rerio , is a prime model organism for vertebrate development and has gained importance in experimental biology and biochemistry for its ease of handling and appreciable genetic homology to mammals. With respect to biomolecular labeling, the zebrafish represents the next level of complexity relative to in vitro cell line models, challenging researchers to further improve the specificity and targeting of their labeling approaches, and to reduce the level of interference with the host. At the same time, bioorthogonal labeling has?facilitated an improved understanding of embryonic zebrafish development. Highlighted in this Perspective are click chemistry approaches that rely on (i) designing analogues of endogenous target molecules, (ii) utilizing the conjugation moiety on these analogues to attach fluorophores by clicking them outside or inside living systems, and finally, (iii) imaging the cells or tissue or, sometimes, the whole organism. While glycans and proteins have been extensively studied in D. rerio using bioorthogonal click chemistry for their intimate involvement in embryonic development, DNA and RNA remain less investigated. Together with the formulation of strategies to perform click reactions with the weakest impact on the host system, bioorthogonal approaches have enormous potential to visualize organisms in all their molecular splendor.
机译:点击化学在细胞系统甚至生物中发现了显着的应用。在过去几年中,对特定应用的生物正交咔哒反应已经改善和量身定制,允许DNA,RNA,蛋白质,聚糖和脂质等生物分子的选择性标记。斑马鱼, Danio Rerio是脊椎动物发育的主要模型生物,并在实验生物学和生物化学中获得了易于处理和可观的遗传同源性的实验生物化学。关于生物分子标记,斑马鱼表示相对于体外细胞系模型的下一个复杂程度,具有挑战性的研究人员,进一步提高其标签方法的特异性和靶向,并降低对主体的干扰水平。与此同时,生物正交标签有:促进了对胚胎斑马鱼发育的改进了解。在此透视图中突出显示,单击化学方法依赖于(i)设计内源性靶分子的类似物,(ii)利用这些类似物上的缀合部分通过点击外部或内部的生活系统来连接荧光团,最后(iii)成像细胞或组织或有时是整个生物体。虽然聚糖和蛋白质已被广泛研究在 d中。使用生物正交的RERIO键参与胚胎发育,DNA和RNA仍然较少研究。随着对宿主系统的最弱影响进行策略的制定,生物正交方法具有巨大的潜力,可在其所有分子辉煌中可视化生物。

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