TY - JOUR
T1 - Alkynone β-trifluoroborates
T2 - A new class of aminespecific biocompatible click reagents
AU - Teng, Shenghan
AU - Ng, Elvis Wang Hei
AU - Zhang, Zhenguo
AU - Soon, Chee Ning
AU - Xu, Hailun
AU - Li, Ruifang
AU - Hirao, Hajime
AU - Loh, Teck Peng
N1 - Publisher Copyright:
© 2023 The Authors.
PY - 2023/4
Y1 - 2023/4
N2 - Amine-targeting reactions that work under biocompatible conditions or in water are green processes that are extremely useful for the synthesis of functional materials and biotherapeutics. Unfortunately, despite the usefulness of this reaction, there are very few good amine-specific click methods reported thus far. Here, we report an amine-specific click reagent using alkynone β-trifluoroborates as the electrophiles. These boron-containing alkynyl reagents exhibit extremely high chemoselectivity toward amines even in the presence of thiols. The resulting oxaboracycle products are bench-stable, displaying the reactivities of both organoborates and enaminones. Intrinsic advantages of this methodology include benign reaction conditions, operational simplicity, remarkable product stability, and excellent chemoselectivity, which satisfy the criteria of click chemistry and demonstrate the high potential in bioconjugation. Hence, this water-based chemical approach is also applicable to the modification of native amino acids, peptides, and proteins. Ultimately, the essential role of water during the reaction was elucidated.
AB - Amine-targeting reactions that work under biocompatible conditions or in water are green processes that are extremely useful for the synthesis of functional materials and biotherapeutics. Unfortunately, despite the usefulness of this reaction, there are very few good amine-specific click methods reported thus far. Here, we report an amine-specific click reagent using alkynone β-trifluoroborates as the electrophiles. These boron-containing alkynyl reagents exhibit extremely high chemoselectivity toward amines even in the presence of thiols. The resulting oxaboracycle products are bench-stable, displaying the reactivities of both organoborates and enaminones. Intrinsic advantages of this methodology include benign reaction conditions, operational simplicity, remarkable product stability, and excellent chemoselectivity, which satisfy the criteria of click chemistry and demonstrate the high potential in bioconjugation. Hence, this water-based chemical approach is also applicable to the modification of native amino acids, peptides, and proteins. Ultimately, the essential role of water during the reaction was elucidated.
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U2 - 10.1126/sciadv.adg4924
DO - 10.1126/sciadv.adg4924
M3 - Article
C2 - 37126553
AN - SCOPUS:85157981278
SN - 2375-2548
VL - 9
JO - Science advances
JF - Science advances
IS - 17
M1 - eadg4924
ER -