Using fluorescence correlation spectroscopy to study conformational changes in denatured proteins

被引:98
作者
Sherman, Eilon [1 ]
Itkin, Anna [1 ]
Kuttner, Yosef Yehuda [1 ]
Rhoades, Elizabeth [1 ]
Amir, Dan [2 ]
Haas, Elisha [2 ]
Haran, Gilad [1 ]
机构
[1] Weizmann Inst Sci, Dept Chem Phys, IL-76100 Rehovot, Israel
[2] Bar Ilan Univ, Dept Life Sci, IL-52900 Ramat Gan, Israel
关键词
D O I
10.1529/biophysj.107.120220
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Fluorescence correlation spectroscopy (FCS) is a sensitive analytical tool that allows dynamics and hydrodynamics of biomolecules to be studied under a broad range of experimental conditions. One application of FCS of current interest is the determination of the size of protein molecules in the various states they sample along their folding reaction coordinate, which can be accessed through the measurement of diffusion coefficients. It has been pointed out that the analysis of FCS curves is prone to artifacts that may lead to erroneous size determination. To set the stage for FCS studies of unfolded proteins, we first show that the diffusion coefficients of small molecules as well as proteins can be determined accurately even in the presence of high concentrations of co-solutes that change the solution refractive index significantly. Indeed, it is found that the Stokes-Einstein relation between the measured diffusion coefficient and solution viscosity holds even in highly concentrated glycerol or guanidinium hydrochloride (GuHCI) solutions. These measurements form the basis for an investigation of the structure of the denatured state of two proteins, the small protein L and the larger, three-domain protein adenylate kinase (AK). FCS is found useful for probing expansion in the denatured state beyond the unfolding transition. It is shown that the denatured state of protein L expands as the denaturant concentration increases, in a process akin to the transition from a globule to a coil in polymers. This process continues at least up to 5 M GuHCI. On the other hand, the denatured state of AK does not seem to expand much beyond 2 M GuHCI, a result that is in qualitative accord with single-molecule fluorescence histograms. Because both the unfolding transition and the coil-globule transition of AK occur at a much lower denaturant concentration than those of protein L, a possible correlation between the two phenomena is suggested.
引用
收藏
页码:4819 / 4827
页数:9
相关论文
共 46 条
[1]   Biophysical characterization of the interaction of the β-lactamase TEM-1 with its protein inhibitor BLIP [J].
Albeck, S ;
Schreiber, G .
BIOCHEMISTRY, 1999, 38 (01) :11-21
[2]   FLUORESCENCE CORRELATION SPECTROSCOPY AS A PROBE OF MOLECULAR-DYNAMICS [J].
ARAGON, SR ;
PECORA, R .
JOURNAL OF CHEMICAL PHYSICS, 1976, 64 (04) :1791-1803
[3]   Coil-globule collapse in flexible macromolecules [J].
Baysal, BM ;
Karasz, FE .
MACROMOLECULAR THEORY AND SIMULATIONS, 2003, 12 (09) :627-646
[4]   Measuring unfolding of proteins in the presence of denaturant using fluorescence correlation spectroscopy [J].
Chattopadhyay, K ;
Saffarian, S ;
Elson, EL ;
Frieden, C .
BIOPHYSICAL JOURNAL, 2005, 88 (02) :1413-1422
[5]   Microchip devices for high-efficiency separations [J].
Culbertson, CT ;
Jacobson, SC ;
Ramsey, JM .
ANALYTICAL CHEMISTRY, 2000, 72 (23) :5814-5819
[6]   Calculation of hydrodynamic properties of globular proteins from their atomic-level structure [J].
de la Torre, JG ;
Huertas, ML ;
Carrasco, B .
BIOPHYSICAL JOURNAL, 2000, 78 (02) :719-730
[7]   Two-focus fluorescence correlation spectroscopy: A new tool for accurate and absolute diffusion measurements [J].
Dertinger, Thomas ;
Pacheco, Victor ;
von der Hocht, Iris ;
Hartmann, Rudolf ;
Gregor, Ingo ;
Enderlein, Joerg .
CHEMPHYSCHEM, 2007, 8 (03) :433-443
[8]   Changes in biomolecular conformation seen by small angle X-ray scattering [J].
Doniach, S .
CHEMICAL REVIEWS, 2001, 101 (06) :1763-1778
[9]   Photobleaching of fluorescent dyes under conditions used for single-molecule detection: Evidence of two-step photolysis [J].
Eggeling, C ;
Widengren, J ;
Rigler, R ;
Seidel, CAM .
ANALYTICAL CHEMISTRY, 1998, 70 (13) :2651-2659
[10]   Macromolecular crowding: an important but neglected aspect of the intracellular environment [J].
Ellis, RJ .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 2001, 11 (01) :114-119