Abstract
Due to their biostability, d-peptides are emerging as an important molecular platform for biomedical applications. Being proteolytically resistant, d-peptides lack interactions with endogenous transporters and hardly enter cells. Here we show that taurine, a natural amino acid, drastically boosts the cellular uptake of small d-peptides in mammalian cells by >10-fold, from 118 ÎM (without conjugating taurine) to >1.6 mM (after conjugating taurine). The uptake of a large amount of the ester conjugate of taurine and d-peptide allows intracellular esterase to trigger intracellular self-assembly of the d-peptide derivative, further enhancing their cellular accumulation. The study on the mechanism of the uptake reveals that the conjugates enter cells via both dynamin-dependent endocytosis and macropinocytosis, but likely not relying on taurine transporters. Differing fundamentally from the positively charged cell-penetrating peptides, the biocompatibility, stability, and simplicity of the enzyme-cleavable taurine motif promise new ways to promote the uptake of bioactive molecules for countering the action of efflux pump and contributing to intracellular molecular self-assembly.
Cite
CITATION STYLE
Zhou, J., Du, X., Li, J., Yamagata, N., & Xu, B. (2015). Taurine boosts cellular uptake of small d -peptides for enzyme-instructed intracellular molecular self-assembly. Journal of the American Chemical Society, 137(32), 10040–10043. https://doi.org/10.1021/jacs.5b06181
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.