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Thioester-Based Coupled Fluorogenic Assays in Microdevice for the Detection of Single-Molecule Enzyme Activities of Esterases with Specified Substrate Recognition.


ABSTRACT: Single-molecule enzyme activity assay is a platform that enables the analysis of enzyme activities at single proteoform level. The limitation of the targetable enzymes is the major drawback of the assay, but the general assay platform is reported to study single-molecule enzyme activities of esterases based on the coupled assay using thioesters as substrate analogues. The coupled assay is realized by developing highly water-soluble thiol-reacting probes based on phosphonate-substituted boron dipyrromethene (BODIPY). The system enables the detection of cholinesterase activities in blood samples at single-molecule level, and it is shown that the dissecting alterations of single-molecule esterase activities can serve as an informative platform for activity-based diagnosis.

SUBMITTER: Ukegawa T 

PROVIDER: S-EPMC10933651 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Thioester-Based Coupled Fluorogenic Assays in Microdevice for the Detection of Single-Molecule Enzyme Activities of Esterases with Specified Substrate Recognition.

Ukegawa Tatsuya T   Komatsu Toru T   Minoda Mayano M   Matsumoto Takuya T   Iwasaka Takumi T   Mizuno Tadahaya T   Tachibana Ryo R   Sakamoto Shingo S   Hanaoka Kenjiro K   Kusuhara Hiroyuki H   Honda Kazufumi K   Watanabe Rikiya R   Urano Yasuteru Y  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20231222 10


Single-molecule enzyme activity assay is a platform that enables the analysis of enzyme activities at single proteoform level. The limitation of the targetable enzymes is the major drawback of the assay, but the general assay platform is reported to study single-molecule enzyme activities of esterases based on the coupled assay using thioesters as substrate analogues. The coupled assay is realized by developing highly water-soluble thiol-reacting probes based on phosphonate-substituted boron dip  ...[more]

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