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A general method for chemogenetic control of peptide function.


ABSTRACT: Natural or engineered peptides serve important biological functions. A general approach to achieve chemical-dependent activation of short peptides will be valuable for spatial and temporal control of cellular processes. Here we present a pair of chemically activated protein domains (CAPs) for controlling the accessibility of both the N- and C-terminal portion of a peptide. CAPs were developed through directed evolution of an FK506-binding protein. By fusing a peptide to one or both CAPs, the function of the peptide is blocked until a small molecule displaces them from the FK506-binding protein ligand-binding site. We demonstrate that CAPs are generally applicable to a range of short peptides, including a protease cleavage site, a dimerization-inducing heptapeptide, a nuclear localization signal peptide, and an opioid peptide, with a chemical dependence up to 156-fold. We show that the CAPs system can be utilized in cell cultures and multiple organs in living animals.

SUBMITTER: Shen J 

PROVIDER: S-EPMC10069916 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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A general method for chemogenetic control of peptide function.

Shen Jiaqi J   Geng Lequn L   Li Xingyu X   Emery Catherine C   Kroning Kayla K   Shingles Gwendolyn G   Lee Kerry K   Heyden Matthias M   Li Peng P   Wang Wenjing W  

Nature methods 20221208 1


Natural or engineered peptides serve important biological functions. A general approach to achieve chemical-dependent activation of short peptides will be valuable for spatial and temporal control of cellular processes. Here we present a pair of chemically activated protein domains (CAPs) for controlling the accessibility of both the N- and C-terminal portion of a peptide. CAPs were developed through directed evolution of an FK506-binding protein. By fusing a peptide to one or both CAPs, the fun  ...[more]

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