Matches in SemOpenAlex for { <https://semopenalex.org/work/W3126683889> ?p ?o ?g. }
- W3126683889 endingPage "309" @default.
- W3126683889 startingPage "293" @default.
- W3126683889 abstract "Macrocyclic peptides open new opportunities to target intracellular protein–protein interactions (PPIs) that are often considered nondruggable by traditional small molecules. However, engineering sufficient membrane permeability into these molecules is a central challenge for identifying clinical candidates. Currently, there is a lack of high-throughput assays to assess peptide permeability, which limits our capacity to engineer this property into macrocyclic peptides for advancement through drug discovery pipelines. Accordingly, we developed a high throughput and target-agnostic cell permeability assay that measures the relative cumulative cytosolic exposure of a peptide in a concentration-dependent manner. The assay was named NanoClick as it combines in-cell Click chemistry with an intracellular NanoBRET signal. We validated the approach using known cell penetrating peptides and further demonstrated a correlation to cellular activity using a p53/MDM2 model system. With minimal change to the peptide sequence, NanoClick enables the ability to measure uptake of molecules that enter the cell via different mechanisms such as endocytosis, membrane translocation, or passive permeability. Overall, the NanoClick assay can serve as a screening tool to uncover predictive design rules to guide structure–activity–permeability relationships in the optimization of functionally active molecules." @default.
- W3126683889 created "2021-02-15" @default.
- W3126683889 creator A5002000242 @default.
- W3126683889 creator A5009799313 @default.
- W3126683889 creator A5013752556 @default.
- W3126683889 creator A5014585040 @default.
- W3126683889 creator A5023927889 @default.
- W3126683889 creator A5030177681 @default.
- W3126683889 creator A5030564549 @default.
- W3126683889 creator A5032157464 @default.
- W3126683889 creator A5035752778 @default.
- W3126683889 creator A5043701397 @default.
- W3126683889 creator A5046226558 @default.
- W3126683889 creator A5050475544 @default.
- W3126683889 creator A5050845134 @default.
- W3126683889 creator A5053085069 @default.
- W3126683889 creator A5057065974 @default.
- W3126683889 creator A5061876736 @default.
- W3126683889 creator A5063540294 @default.
- W3126683889 creator A5067119069 @default.
- W3126683889 creator A5069728112 @default.
- W3126683889 creator A5070284125 @default.
- W3126683889 creator A5075834923 @default.
- W3126683889 creator A5078031141 @default.
- W3126683889 creator A5082655309 @default.
- W3126683889 creator A5084000993 @default.
- W3126683889 creator A5088604608 @default.
- W3126683889 date "2021-02-04" @default.
- W3126683889 modified "2023-10-16" @default.
- W3126683889 title "NanoClick: A High Throughput, Target-Agnostic Peptide Cell Permeability Assay" @default.
- W3126683889 cites W1490688374 @default.
- W3126683889 cites W1521905687 @default.
- W3126683889 cites W1574601702 @default.
- W3126683889 cites W1584683177 @default.
- W3126683889 cites W1860382351 @default.
- W3126683889 cites W1968222033 @default.
- W3126683889 cites W1970877840 @default.
- W3126683889 cites W1972711580 @default.
- W3126683889 cites W1982619775 @default.
- W3126683889 cites W1984945146 @default.
- W3126683889 cites W1994434169 @default.
- W3126683889 cites W1995518628 @default.
- W3126683889 cites W1995961820 @default.
- W3126683889 cites W2020788542 @default.
- W3126683889 cites W2024949383 @default.
- W3126683889 cites W2031064824 @default.
- W3126683889 cites W2038954923 @default.
- W3126683889 cites W2048486618 @default.
- W3126683889 cites W2049598700 @default.
- W3126683889 cites W2051223300 @default.
- W3126683889 cites W2052706007 @default.
- W3126683889 cites W2054854596 @default.
- W3126683889 cites W2057536036 @default.
- W3126683889 cites W2062118639 @default.
- W3126683889 cites W2066778206 @default.
- W3126683889 cites W2068130700 @default.
- W3126683889 cites W2072435450 @default.
- W3126683889 cites W2076801702 @default.
- W3126683889 cites W2080645020 @default.
- W3126683889 cites W2083752551 @default.
- W3126683889 cites W2089421206 @default.
- W3126683889 cites W2089657872 @default.
- W3126683889 cites W2094130001 @default.
- W3126683889 cites W2094895270 @default.
- W3126683889 cites W2110258322 @default.
- W3126683889 cites W2111994795 @default.
- W3126683889 cites W2134178604 @default.
- W3126683889 cites W2135732933 @default.
- W3126683889 cites W2159672669 @default.
- W3126683889 cites W2161453624 @default.
- W3126683889 cites W2186110136 @default.
- W3126683889 cites W2238036732 @default.
- W3126683889 cites W2279872789 @default.
- W3126683889 cites W2332082155 @default.
- W3126683889 cites W2333391926 @default.
- W3126683889 cites W2335878664 @default.
- W3126683889 cites W2397093333 @default.
- W3126683889 cites W2399229449 @default.
- W3126683889 cites W2529268217 @default.
- W3126683889 cites W2556527414 @default.
- W3126683889 cites W2606139312 @default.
- W3126683889 cites W2767686567 @default.
- W3126683889 cites W2770104275 @default.
- W3126683889 cites W2773080986 @default.
- W3126683889 cites W2785819509 @default.
- W3126683889 cites W2801697793 @default.
- W3126683889 cites W2884767099 @default.
- W3126683889 cites W2885038309 @default.
- W3126683889 cites W2885614068 @default.
- W3126683889 cites W2894167212 @default.
- W3126683889 cites W2916313751 @default.
- W3126683889 cites W2951116619 @default.
- W3126683889 cites W2972604821 @default.
- W3126683889 cites W2982331182 @default.
- W3126683889 cites W2990591130 @default.
- W3126683889 cites W3023548311 @default.
- W3126683889 cites W4249074344 @default.
- W3126683889 doi "https://doi.org/10.1021/acschembio.0c00804" @default.