Palladium-unleashed proteins: Gentle aldehyde decaging for site-selective protein modification

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Abstract

Protein bioconjugation frequently makes use of aldehydes as reactive handles, with methods for their installation being highly valued. Here a new, powerful strategy to unmask a reactive protein aldehyde is presented. A genetically encoded caged glyoxyl aldehyde, situated in solvent-accessible locations, can be rapidly decaged through treatment with just one equivalent of allylpalladium(ii) chloride dimer at physiological pH. The protein aldehyde can undergo subsequent oxime ligation for site-selective protein modification. Quick yet mild conditions, orthogonality and powerful exposed reactivity make this strategy of great potential in protein modification.

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Brabham, R. L., Spears, R. J., Walton, J., Tyagi, S., Lemke, E. A., & Fascione, M. A. (2018). Palladium-unleashed proteins: Gentle aldehyde decaging for site-selective protein modification. Chemical Communications, 54(12), 1501–1504. https://doi.org/10.1039/c7cc07740h

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