» Articles » PMID: 22244808

Quantitative Förster Resonance Energy Transfer Analysis for Kinetic Determinations of SUMO-specific Protease

Overview
Journal Anal Biochem
Publisher Elsevier
Specialty Biochemistry
Date 2012 Jan 17
PMID 22244808
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

Förster resonance energy transfer (FRET) technology has been widely used in biological and biomedical research, and it is a very powerful tool for elucidating protein interactions in either dynamic or steady state. SUMOylation (the process of SUMO [small ubiquitin-like modifier] conjugation to substrates) is an important posttranslational protein modification with critical roles in multiple biological processes. Conjugating SUMO to substrates requires an enzymatic cascade. Sentrin/SUMO-specific proteases (SENPs) act as an endopeptidase to process the pre-SUMO or as an isopeptidase to deconjugate SUMO from its substrate. To fully understand the roles of SENPs in the SUMOylation cycle, it is critical to understand their kinetics. Here, we report a novel development of a quantitative FRET-based protease assay for SENP1 kinetic parameter determination. The assay is based on the quantitative analysis of the FRET signal from the total fluorescent signal at acceptor emission wavelength, which consists of three components: donor (CyPet-SUMO1) emission, acceptor (YPet) emission, and FRET signal during the digestion process. Subsequently, we developed novel theoretical and experimental procedures to determine the kinetic parameters, k(cat), K(M), and catalytic efficiency (k(cat)/K(M)) of catalytic domain SENP1 toward pre-SUMO1. Importantly, the general principles of this quantitative FRET-based protease kinetic determination can be applied to other proteases.

Citing Articles

Aptamer regulated peroxidase-like activity of cobalt oxyhydroxide nanosheets for colorimetric detection of kanamycin.

Xiao S, Wu J, Kang M, Dong Z Anal Sci. 2024; 40(12):2181-2190.

PMID: 39196511 DOI: 10.1007/s44211-024-00655-y.


High-Throughput Fluorescent Assay for Inhibitor Screening of Proteases from RNA Viruses.

Cihlova B, Huskova A, Boserle J, Nencka R, Boura E, Silhan J Molecules. 2021; 26(13).

PMID: 34206406 PMC: 8270262. DOI: 10.3390/molecules26133792.


Isopeptidase Kinetics Determination by a Real Time and Sensitive qFRET Approach.

Liu Y, Shen Y, Song Y, Xu L, Perry J, Liao J Biomolecules. 2021; 11(5).

PMID: 33946350 PMC: 8145275. DOI: 10.3390/biom11050673.


An in vitro Förster resonance energy transfer-based high-throughput screening assay identifies inhibitors of SUMOylation E2 Ubc9.

Wang Y, Liu X, Way G, Madarha V, Zhou Q, Yang D Acta Pharmacol Sin. 2020; 41(11):1497-1506.

PMID: 32341466 PMC: 7656853. DOI: 10.1038/s41401-020-0405-7.


Chemical Tools and Biochemical Assays for SUMO Specific Proteases (SENPs).

Jia Y, Claessens L, Vertegaal A, Ovaa H ACS Chem Biol. 2019; 14(11):2389-2395.

PMID: 31361113 PMC: 6862319. DOI: 10.1021/acschembio.9b00402.