生物正交化学
蛋白质组
化学
蛋白质组学
生物化学
氨基酸
细胞培养中氨基酸的稳定同位素标记
转移RNA
叠氮化物
氨酰tRNA合成酶
细胞培养
点击化学
计算生物学
组合化学
生物
核糖核酸
遗传学
基因
有机化学
作者
Andrew C. Yang,Haley du Bois,Niclas Olsson,David Gate,Benoit Lehallier,Daniela Berdnik,Kyle D. Brewer,Carolyn R. Bertozzi,Joshua E. Elias,Tony Wyss‐Coray
摘要
Bioorthogonal tools enable cell-type-specific proteomics, a prerequisite to understanding biological processes in multicellular organisms. Here we report two engineered aminoacyl-tRNA synthetases for mammalian bioorthogonal labeling: a tyrosyl ( ScTyrY43G) and a phenylalanyl ( MmPheT413G) tRNA synthetase that incorporate azide-bearing noncanonical amino acids specifically into the nascent proteomes of host cells. Azide-labeled proteins are chemoselectively tagged via azide-alkyne cycloadditions with fluorophores for imaging or affinity resins for mass spectrometric characterization. Both mutant synthetases label human, hamster, and mouse cell line proteins and selectively activate their azido-bearing amino acids over 10-fold above the canonical. ScTyrY43G and MmPheT413G label overlapping but distinct proteomes in human cell lines, with broader proteome coverage upon their coexpression. In mice, ScTyrY43G and MmPheT413G label the melanoma tumor proteome and plasma secretome. This work furnishes new tools for mammalian residue-specific bioorthogonal chemistry, and enables more robust and comprehensive cell-type-specific proteomics in live mammals.
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