Surface-Tunable Bioluminescence Resonance Energy Transfer via Geometry-Controlled ZnO Nanorod Coordination

  • Lim, Jun Hyung
  • Park, Geun Chul
  • Lee, Seung Muk
  • Lee, Jung Heon
  • Lim, Butaek
  • ... Kim, Young-Pil
  • 외 4명
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초록

The use of ZnO nanorods (NRs) as an effective coordinator and biosensing platform to create bioluminescence resonance energy transfer (BRET) is reported. Herein, a hydrothermal approach is applied to obtain morphologically controlled ZnO NRs, which are directly bound to luciferase (Luc) and carboxy-modified quantum dot (QD) acting as a donor-acceptor pair for BRET. BRET efficiency varies significantly with the geometry of ZnO NRs, which modulates the coordination between hexahistidine-tagged Luc (Luc-His 6) and QD, owing to the combined effect of the total surface area consisting of (001) and (100) planes and their surface polarities. Unlike typical QD-BRET reactions with metal ions (e.g., zinc ions), a geometry-controlled ZnO NR platform can facilitate the design of surface-initiated BRET sensors without being supplemented by copious metal ions: the geometry-controlled ZnO NR platform can therefore pave the way for nanostructure-based biosensors with enhanced analytical performance.

키워드

affinity tagsbioluminescencemetal coordinationquantum dotsresonance energy transferZnO nanorodsTRANSFER BRETPROTEIN INTERACTIONSSINGLE-MOLECULECELLSPURIFICATIONSERS
제목
Surface-Tunable Bioluminescence Resonance Energy Transfer via Geometry-Controlled ZnO Nanorod Coordination
저자
Lim, Jun HyungPark, Geun ChulLee, Seung MukLee, Jung HeonLim, ButaekHwang, Soo MinKim, Jung HoPark, HansooJoo, JinhoKim, Young-Pil
DOI
10.1002/smll.201403700
발행일
2015-07
유형
Article
저널명
Small
11
28
페이지
3469 ~ 3475