Huang_2023_ACS.Omega_8_46073

Reference

Title : Manipulating Diastereomeric Bicyclononynes to Sensitively Determine Enzyme Activity and Facilitate Macromolecule Conjugations - Huang_2023_ACS.Omega_8_46073
Author(s) : Huang CH , Hou SY , Severance S , Hwang CC , Fang BK , Gong MM , Yu SL , Weng YC , Wang LF , Dai CY , Wang SH , Kuo HT , Wang JJ , Wang TP
Ref : ACS Omega , 8 :46073 , 2023
Abstract :

Bicyclo[6.1.0]nonyne (BCN) is one of the most commonly used cycloalkynes in strain-promoted azide-alkyne cycloaddition (SPAAC). The synthesis of BCN produces two diastereomers, exo-BCN and endo-BCN. The potential significance of the different steric structures of the tricyclic fused rings in SPAAC products synthesized from the BCN diastereomers has not been previously studied. We first demonstrated that only endo-BCN could reduce the level of fluorescence quenching in SPAAC reaction products. The reduction was likely due to the presence of extended tricyclic fused ring systems. This hypothesis was supported by the synthesis of a fluorescence always-on construct by substituting endo-BCN for exo-BCN in a previously reported chemical probe that was characterized with good contact fluorescence quenching. We also synthesized bis-BCN derivatives to enhance the steric structural differences in the corresponding SPAAC products. A constitutional isomer of the azido-derivatized 5(6)-carboxyfluorescein [5(6)-FAM] was reacted with both bis-exo-BCN and bis-endo-BCN compounds. However, one form of the bis-exo-BCN-based product did not augment contact fluorescence quenching, while a second bis-exo-BCN product could not further reduce contact fluorescence quenching. Nevertheless, a new fluorescence turn-on chemical probe was employed to determine the activities of two serum biomarkers, butyrylcholinesterase and paraoxonase 1. Moreover, bis-endo-BCN was exploited to successfully conjugate BSA with a 5-FAM derivative compound.

PubMedSearch : Huang_2023_ACS.Omega_8_46073
PubMedID: 38075741

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Citations formats

Huang CH, Hou SY, Severance S, Hwang CC, Fang BK, Gong MM, Yu SL, Weng YC, Wang LF, Dai CY, Wang SH, Kuo HT, Wang JJ, Wang TP (2023)
Manipulating Diastereomeric Bicyclononynes to Sensitively Determine Enzyme Activity and Facilitate Macromolecule Conjugations
ACS Omega 8 :46073

Huang CH, Hou SY, Severance S, Hwang CC, Fang BK, Gong MM, Yu SL, Weng YC, Wang LF, Dai CY, Wang SH, Kuo HT, Wang JJ, Wang TP (2023)
ACS Omega 8 :46073