Low-Background Cancer Imaging With a Bioorthogonal Fluorescence Probe and Engineered Reporter Enzyme Bearing a Targeting Moiety
Wang, Z.; Kojima, R.; Kiji, R.; Fujita, K.; Tachibana, R.; Uchiyama, T.; Minagawa, Y.; Mizuno, T.; Igarashi, K.; Noji, H.; Kamiya, M.; Urano, Y.
Show abstract
Combinatorial use of an antibody-reporter enzyme conjugate and a fluorescence probe activated by the enzyme is a powerful strategy for fluorescence-guided cancer surgery. However, conventional probes for typical reporter enzymes are insufficiently bioorthogonal, resulting in high background signals in non-target tissues. We screened a library of HMRef (rhodol derivative)-based fluorescence probes bearing various sugar moieties, and discovered that HMRef-{beta}-D-fucose is bioorthogonal in mammalian systems, but is activated by a metagenomic glycosidase, Td2F2. Directed evolution generated a mutant with a kcat/Km value for HMRef-{beta}-D-fucose of 3.3 x 105/M/sec, 7.3 times higher than that of wild-type Td2F2 and comparable to that of {beta}-galactosidase (LacZ) with a corresponding probe. Theoretical calculation suggested that E296G mutation in Td2F2 causes structural changes that facilitate the probes access to the enzymes active site. In a proof-of-concept study, cancer cells were visualized with a minimal background in the mesentery of a mouse model of peritoneally disseminated human-ovarian-cancer-derived SKOV-3 cells, which endogenously express HER2, by using HMRef-{beta}-D-fucose together with engineered Td2F2 conjugated/fused to a HER2-binding antibody/nanobody.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.