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Noncanonical Amino Acid Labeling in Vivo to Visualize and Affinity Purify Newly Synthesized Proteins in Larval Zebrafish

机译:体内非规范性氨基酸标记以可视化和亲和纯化幼虫斑马鱼中的新合成的蛋白质。

摘要

Protein expression in the nervous system undergoes regulated changes in response to changes in behavioral states, in particular long-term memory formation. Recently, methods have been developed (BONCAT and FUNCAT), which introduce noncanonical amino acids bearing small bio-orthogonal functional groups into proteins using the cells’ own translational machinery. Using the selective “click reaction”, this allows for the identification and visualization of newly synthesized proteins in vitro. Here we demonstrate that noncanonical amino acid labeling can be achieved in vivo in an intact organism capable of simple learning behavior, the larval zebrafish. We show that azidohomoalanine is metabolically incorporated into newly synthesized proteins, in a time- and concentration-dependent manner, but has no apparent toxic effect and does not influence simple behaviors such as spontaneous swimming and escape responses. This enables fluorescent labeling of newly synthesized proteins in whole mount larval zebrafish. Furthermore, stimulation with a GABA antagonist that elicits seizures in the larval zebrafish causes an increase in protein synthesis throughout the proteome, which can also be visualized in intact larvae.
机译:神经系统中的蛋白质表达会响应行为状态的变化(尤其是长期记忆的形成)而发生调节性变化。最近,已经开发了一些方法(BONCAT和FUNCAT),该方法利用细胞自身的翻译机制将带有小的生物正交官能团的非规范氨基酸引入蛋白质。使用选择性的“点击反应”,可以在体外鉴定和可视化新合成的蛋白质。在这里,我们证明了在能够简单学习行为的完整有机体幼虫斑马鱼体内可以实现非规范氨基酸标记。我们显示,叠氮高丙氨酸以时间和浓度依赖性方式代谢结合到新合成的蛋白质中,但没有明显的毒性作用,并且不影响简单的行为,例如自发游泳和逃避反应。这使得可以在整个幼体斑马鱼中对新合成的蛋白质进行荧光标记。此外,在斑马鱼幼虫中引起癫痫发作的GABA拮抗剂刺激会导致整个蛋白质组蛋白质合成的增加,这在完整的幼虫中也可以看到。

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