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Surface Orientation Control of Site-Specifically Immobilized Nitro-reductase (NfsB).

Langmuir.. 2014-05;  30(20):5930-8
Shen L, Schroeder M, Ogorzalek TL, Yang P, Wu FG, Marsh EN, Chen Z. Department of Chemistry and Chemical Biology Graduate Program, University of Michigan, Ann Arbor, Michigan 48109, United States.
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摘要

We demonstrate the control of enzyme orientation for enzymes chemically immobilized on surfaces. Nitro-reductase (NfsB) has the ability to reduce a broad range of nitro-containing compounds and has potential applications in a broad range of areas including the detection and decomposition of explosives. The enzyme was tethered through unique surface cysteine residues to a self-assembled monolayer (SAM) terminated with maleimide groups. One cysteine was introduced close to the active site (V424C), and the other, at a remote site (H360C). The surface-tethered NfsB variants were interrogated by a combination of surface-sensitive sum frequency generation (SFG) vibrational spectroscopy and attenuated total reflection... More

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