4.8 Article

Palladium-triggered deprotection chemistry for protein activation in living cells

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NATURE CHEMISTRY
卷 6, 期 4, 页码 352-361

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NATURE PUBLISHING GROUP
DOI: 10.1038/NCHEM.1887

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  1. National Natural Science Foundation of China [21225206, 91313301]
  2. National Key Basic Research Foundation of China [2010CB912302]

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Employing small molecules or chemical reagents to modulate the function of an intracellular protein, particularly in a gain-of-function fashion, remains a challenge. In contrast to inhibitor-based loss-of-function approaches, methods based on a gain of function enable specific signalling pathways to be activated inside a cell. Here we report a chemical rescue strategy that uses a palladium-mediated deprotection reaction to activate a protein within living cells. We identify biocompatible and efficient palladium catalysts that cleave the propargyl carbamate group of a protected lysine analogue to generate a free lysine. The lysine analogue can be genetically and site-specifically incorporated into a protein, which enables control over the reaction site. This deprotection strategy is shown to work with a range of different cell lines and proteins. We further applied this biocompatible protection group/catalyst pair for caging and subsequent release of a crucial lysine residue in a bacterial Type III effector protein within host cells, which reveals details of its virulence mechanism.

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