Quantum Dot Peptide Biosensors for Monitoring Caspase 3 Proteolysis and Calcium Ions

被引:138
作者
Prasuhn, Duane E. [1 ]
Feltz, Anne [3 ]
Blanco-Canosa, Juan B. [8 ,9 ]
Susumu, Kimihiro [2 ]
Stewart, Michael H. [2 ]
Mei, Bing C. [2 ]
Yakovlev, Aleksey V. [3 ]
Loukov, Christina [4 ]
Mallet, Jean-Maurice [4 ]
Oheim, Martin [5 ,6 ,7 ]
Dawson, Philip E. [8 ,9 ]
Medintz, Igor L. [1 ]
机构
[1] USN, Res Lab, Ctr Bio Mol Sci & Engn, Washington, DC 20375 USA
[2] USN, Res Lab, Div Opt Sci, Washington, DC 20375 USA
[3] CNRS, UMR 8197, INSERUM, U1024,Inst Biol,Ecole Normal Super,IBENS, F-75005 Paris, France
[4] CNRS, UMR, Dept Chim, ENS, F-75005 Paris, France
[5] Univ Paris 05, Lab Neurophysiol & New Microscopies, F-75006 Paris, France
[6] INSERM, U603, F-75006 Paris, France
[7] CNRS, UMR8154, F-75006 Paris, France
[8] Scripps Res Inst, Dept Cell Biol, La Jolla, CA 92037 USA
[9] Scripps Res Inst, Dept Chem, La Jolla, CA 92037 USA
关键词
quantum dot; nanocrystal; biosensor; protease; calcium; FRET; indicator; caspase; 3; fluorescence; energy transfer; dye; RESONANCE ENERGY-TRANSFER; DRUG-DELIVERY; APOPTOSIS; PROTEINS; NANOPARTICLES; NANOCRYSTALS; CHEMISTRY; DONORS; PHASE; CDSE;
D O I
10.1021/nn1016132
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The nanoscale size and unique optical properties of semiconductor quantum dots (QDs) have made them attractive as central photoluminescent scaffolds for a variety of biosensing platforms. In this report we functionalize QDs with dye-labeled peptides using two different linkage chemistries to yield Forster resonance energy transfer (FRET)-based sensors capable of monitoring either enzymatic activity or ionic presence. The first sensor targets the proteolytic activity of caspase 3, a key downstream effector of apoptosis. This QD conjugate utilized carbodiimide chemistry to covalently link dye-labeled peptide substrates to the terminal carboxyl groups on the QD's surface hydrophilic ligands in a quantitative manner. Caspase 3 cleaved the peptide substrate and disrupted QD donor-dye acceptor FRET providing signal transduction of enzymatic activity and allowing derivation of relevant Michaelis-Menten kinetic descriptors. The second sensor was designed to monitor Ca2+ ions that are ubiquitous in many biological processes. For this sensor, Cu+-catalyzed [3 + 2] azide-alkyne cycloaddition was exploited to attach a recently developed azide-functionalized CalciumRuby-CI indicator dye to a cognate alkyne group present on the terminus of a modified peptide. The labeled peptide also expressed a polyhistidine sequence, which facilitated its subsequent metal-affinity coordination to the QD surface establishing the final FRET sensing construct. Adding exogenous Ca2+ to the sensor solution increased the dyes fluorescence, altering the donor-acceptor emission ratio and manifested a dissociation constant similar to that of the native dye. These results highlight the potential for combining peptides with QDs using different chemistries to create sensors for monitoring chemical compounds and biological processes.
引用
收藏
页码:5487 / 5497
页数:11
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