Ultrafast fluorescence resonance energy transfer in a bile salt aggregate: Excitation wavelength dependence

被引:0
作者
Ujjwal Mandal
Subhadip Ghosh
Dibyendu Kumar Das
Aniruddha Adhikari
Shantanu Dey
Kankan Bhattacharyya
机构
[1] Indian Association for the Cultivation of Science,Physical Chemistry Department
来源
Journal of Chemical Sciences | 2008年 / 120卷
关键词
Bile salt; excitation wavelength dependence; femtosecond; FRET;
D O I
暂无
中图分类号
学科分类号
摘要
Fluorescence resonance energy transfer (FRET) from Coumarin 153 (C153) to Rhodamine 6G (R6G) in a secondary aggregate of a bile salt (sodium deoxycholate, NaDC) is studied by femtosecond up-conversion. The emission spectrum of C153 in NaDC is analysed in terms of two spectra-one with emission maximum at 480 nm which corresponds to a non-polar and hydrophobic site and another with maximum at ∼530 nm which arises from a polar hydrophilic site. The time constants of FRET were obtained from the rise time of the emission of the acceptor (R6G). In the NaDC aggregate, FRET occurs in multiple time scales — 4 ps and 3700 ps. The 4 ps component is assigned to FRET from a donor (D) to an acceptor (A) held at a close distance (RDA ∼ 17 Å) inside the bile salt aggregate. The 3700 ps component corresponds to a donor-acceptor distance ∼48 Å. The long (3700 ps) component may involve diffusion of the donor. With increase in the excitation wavelength (λex) from 375 to 435 nm, the relative contribution of the ultrafast component of FRET (∼4 ps) increases from 3 to 40% with a concomitant decrease in the contribution of the ultraslow component (∼3700 ps) from 97 to 60%. The λex dependence is attributed to the presence of donors at different locations. At a long λex (435 nm) donors in the highly polar peripheral region are excited. A short λex (375 nm) ‘selects’ donor at a hydrophobic location.
引用
收藏
页码:15 / 23
页数:8
相关论文
共 50 条
[21]   Determination of DNA helical handedness by fluorescence resonance energy transfer [J].
JaresErijman, EA ;
Jovin, TM .
JOURNAL OF MOLECULAR BIOLOGY, 1996, 257 (03) :597-617
[22]   Detection of BER Enzymes Based on Fluorescence Resonance Energy Transfer [J].
Kim, Yongtae ;
Hong, In Seok .
BULLETIN OF THE KOREAN CHEMICAL SOCIETY, 2009, 30 (09) :2149-2151
[23]   Fluorescence Resonance Energy Transfer Systems in Supramolecular Macrocyclic Chemistry [J].
Lou, Xin-Yue ;
Song, Nan ;
Yang, Ying-Wei .
MOLECULES, 2017, 22 (10)
[24]   Fluorescence resonance energy transfer imaging by maximum likelihood estimation [J].
Zhang, YP ;
Yuan, YM ;
Holmes, TJ .
MULTIPHOTON MICROSCOPY IN THE BIOMEDICAL SCIENCES IV, 2004, 5323 :108-118
[25]   Effect of plasmonic nanostructures and nanofilms on fluorescence resonance energy transfer [J].
Szmacinski, Henryk ;
Ray, Krishanu ;
Lakowicz, Joseph R. .
JOURNAL OF BIOPHOTONICS, 2009, 2 (04) :243-252
[26]   Forster resonance energy transfer between acridinediones and selected fluorophores-Medium dependence [J].
Krishnaveni, R. ;
Ramamurthy, P. .
JOURNAL OF LUMINESCENCE, 2013, 138 :242-250
[27]   Decay time shortening of fluorescence from donor-acceptor pair proteins using ultrafast time-resolved fluorescence resonance energy transfer spectroscopy [J].
Baba, Motoyoshi ;
Suzuki, Masayuki ;
Ganeev, Rashid A. ;
Kuroda, Hiroto ;
Ozaki, Tsuneyuki ;
Hamakubo, Takao ;
Masuda, Kazuyuki ;
Hayashi, Masahiro ;
Sakihama, Toshiko ;
Kodama, Tatsuhiko ;
Kozasa, Tohru .
JOURNAL OF LUMINESCENCE, 2007, 127 (02) :355-361
[28]   Solvent Polarity and Excitation Wavelength Dependence of the Dual Fluorescence in N,N-Diethyl-4-Nitrosoaniline [J].
Nizamudin A. Hussien ;
Ahmed M. Mohammed ;
M. Tessema ;
F. B. Dejene ;
Mesfin Redi-Abshiro .
Journal of Fluorescence, 2012, 22 :451-456
[29]   Solvent Polarity and Excitation Wavelength Dependence of the Dual Fluorescence in N,N-Diethyl-4-Nitrosoaniline [J].
Hussien, Nizamudin A. ;
Mohammed, Ahmed M. ;
Tessema, M. ;
Dejene, F. B. ;
Redi-Abshiro, Mesfin .
JOURNAL OF FLUORESCENCE, 2012, 22 (01) :451-456
[30]   Infrared fluorescent protein iRFP as an acceptor for resonance excitation energy transfer [J].
O. A. Zlobovskaya ;
K. S. Sarkisyan ;
K. A. Lukyanov .
Russian Journal of Bioorganic Chemistry, 2015, 41 :266-270