TY - JOUR
T1 - A protease inhibitor discovery method using fluorescence correlation spectroscopy with position-specific labeled protein substrates
AU - Nakata, Hidetaka
AU - Ohtsuki, Takashi
AU - Sisido, Masahiko
PY - 2009/7/15
Y1 - 2009/7/15
N2 - We developed novel substrates for protease activity evaluation by fluorescence correlation spectroscopy (FCS). Substrates were labeled in a position-specific manner with a fluorophore near the N terminus and included a C-terminal, 30 kDa, highly soluble protein (elongation factor Ts [EF-Ts]). The C-terminal protein enhanced the substrate peptide solubility and increased the molecular weight, enabling sensitive detection by FCS. Using the labeled substrates, caspase-3 and matrix metalloproteinase-9 (MMP-9) activities were confirmed by FCS. To demonstrate the suitability of this FCS-based assay for high-throughput screening, we screened various chemical compounds for MMP-9 inhibitors. The screening results confirmed the inhibitory activity of one compound and also revealed another potential MMP-9 inhibitor. Thus, this combination of position-specific labeled protein substrates and FCS may serve as a useful tool for evaluating activities of various proteases and for protease inhibitor screening.
AB - We developed novel substrates for protease activity evaluation by fluorescence correlation spectroscopy (FCS). Substrates were labeled in a position-specific manner with a fluorophore near the N terminus and included a C-terminal, 30 kDa, highly soluble protein (elongation factor Ts [EF-Ts]). The C-terminal protein enhanced the substrate peptide solubility and increased the molecular weight, enabling sensitive detection by FCS. Using the labeled substrates, caspase-3 and matrix metalloproteinase-9 (MMP-9) activities were confirmed by FCS. To demonstrate the suitability of this FCS-based assay for high-throughput screening, we screened various chemical compounds for MMP-9 inhibitors. The screening results confirmed the inhibitory activity of one compound and also revealed another potential MMP-9 inhibitor. Thus, this combination of position-specific labeled protein substrates and FCS may serve as a useful tool for evaluating activities of various proteases and for protease inhibitor screening.
KW - Fluorescence correlation spectroscopy
KW - Four-base codon
KW - Position-specific labeling
KW - Protease assay
KW - Protease substrate
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U2 - 10.1016/j.ab.2009.03.049
DO - 10.1016/j.ab.2009.03.049
M3 - Article
C2 - 19394304
AN - SCOPUS:65849133747
SN - 0003-2697
VL - 390
SP - 121
EP - 125
JO - Analytical Biochemistry
JF - Analytical Biochemistry
IS - 2
ER -