YEAST TATA-BINDING PROTEIN-INTERACTION WITH DNA - FLUORESCENCE DETERMINATION OF OLIGOMERIC STATE, EQUILIBRIUM BINDING, ON-RATE, AND DISSOCIATION KINETICS

被引:132
作者
PEREZHOWARD, GM [1 ]
WEIL, PA [1 ]
BEECHEM, JM [1 ]
机构
[1] VANDERBILT UNIV,SCH MED,DEPT MOLEC PHYSIOL & BIOPHYS,NASHVILLE,TN 37232
关键词
D O I
10.1021/bi00025a006
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A combination of steady-state, stopped-flow, and time-resolved fluorescence of intrinsic tryptophan and extrinsically labeled fluorescent DNA is utilized to examine the interaction of yeast TATA binding protein (TBP) with DNA. TBP is composed of two structural domains, the carboxy domain (residues 61-240), which is responsible for DNA binding and initiation of basal level transcription, and an amino terminal domain (residues 1-60), whose function is currently unknown. The steady-state fluorescence emission spectrum of the single tryptophan in the amino terminal domain of TBP undergoes a huge (30-40 nm) red-shift upon interaction with stoichiometric amounts of TATA box containing DNA. From time-resolved tryptophan fluorescence anisotropy studies, we demonstrate that, in the absence of DNA, the protein exists as a multimer in solution and it contains (at least) two primary conformations, one with the amino terminus associated tightly with the protein(s) in a hydrophobic environment and one with the amino terminus decoupled away from the rest of the protein and solvent-exposed. Upon binding DNA, the protein dissociates into a monomeric complex, upon which only the solvent-exposed amino terminus conformation remains. Kinetic and equilibrium binding studies were performed on TATA box containing DNA which was extrinsically labeled with a fluorescent probe Rhodamine-X at the 5'-end. This ''fluorescent'' DNA allowed for the collection of quantitative spectroscopic binding, kinetic on-rate, and kinetic off-rate data at physiological concentrations. Global analysis of equilibrium binding studies performed from 500 pM to 50 nM DNA reveals a single dissociation constant (K-d) of approximately 5 nM. Global analysis of stopped-flow anisotropy on-rate experiments, with millisecond timing resolution and TBP concentrations ranging from 20 to 600 nM (20 nM DNA), can be perfectly described by a single second-order rate constant of 1.66 x 10(5) M(-1) s(-1). These measurements represent the very first stopped flow anisotropy study of a protein/DNA interaction. Stopped-flow anisotropy off-rate experiments reveal a single exponential k(off) of 4.3 x 10(-2) min(-1) (1/k(off) = 23 min). From the ratio of on-rate to off-rate, a predicted K-d of 4.3 nM is obtained, revealing that the kinetic and equilibrium studies are internally consistent. Deletion of the amino terminal domain of TBP decreases the k(on) of TBP approximately 45-fold and eliminates classic second-order behavior.
引用
收藏
页码:8005 / 8017
页数:13
相关论文
共 46 条
[11]   A HIGHLY CONSERVED DOMAIN OF TFIID DISPLAYS SPECIES SPECIFICITY INVIVO [J].
GILL, G ;
TJIAN, R .
CELL, 1991, 65 (02) :333-340
[12]   YEAST TATA-BINDING PROTEIN TFIID BINDS TO TATA ELEMENTS WITH BOTH CONSENSUS AND NONCONSENSUS DNA-SEQUENCES [J].
HAHN, S ;
BURATOWSKI, S ;
SHARP, PA ;
GUARENTE, L .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (15) :5718-5722
[13]   ISOLATION OF THE GENE ENCODING THE YEAST TATA BINDING-PROTEIN TFIID - A GENE IDENTICAL TO THE SPT15 SUPPRESSOR OF TY ELEMENT INSERTIONS [J].
HAHN, S ;
BURATOWSKI, S ;
SHARP, PA ;
GUARENTE, L .
CELL, 1989, 58 (06) :1173-1181
[14]   TBP, A UNIVERSAL EUKARYOTIC TRANSCRIPTION FACTOR [J].
HERNANDEZ, N .
GENES & DEVELOPMENT, 1993, 7 (7B) :1291-1308
[15]   APPLICATION OF FLUORESCENCE ENERGY-TRANSFER AND POLARIZATION TO MONITOR ESCHERICHIA-COLI CAMP RECEPTOR PROTEIN AND LAC PROMOTER INTERACTION [J].
HEYDUK, T ;
LEE, JC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (05) :1744-1748
[16]  
HOOPES BC, 1992, J BIOL CHEM, V267, P11539
[17]   ANALYSIS OF STRUCTURE-FUNCTION-RELATIONSHIPS OF YEAST TATA BOX BINDING-FACTOR TFIID [J].
HORIKOSHI, M ;
YAMAMOTO, T ;
OHKUMA, Y ;
WEIL, PA ;
ROEDER, RG .
CELL, 1990, 61 (07) :1171-1178
[18]   PURIFICATION OF A YEAST TATA BOX-BINDING PROTEIN THAT EXHIBITS HUMAN TRANSCRIPTION FACTOR-IID ACTIVITY [J].
HORIKOSHI, M ;
WANG, CK ;
FUJII, H ;
CROMLISH, JA ;
WEIL, PA ;
ROEDER, RG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (13) :4843-4847
[19]   CLONING AND STRUCTURE OF A YEAST GENE ENCODING A GENERAL TRANSCRIPTION INITIATION-FACTOR TFIID THAT BINDS TO THE TATA BOX [J].
HORIKOSHI, M ;
WANG, CK ;
FUJII, H ;
CROMLISH, JA ;
WEIL, PA ;
ROEDER, RG .
NATURE, 1989, 341 (6240) :299-303
[20]   MULTIMERIZATION OF THE MOUSE TATA-BINDING PROTEIN (TBP) DRIVEN BY ITS C-TERMINAL CONSERVED DOMAIN [J].
KATO, K ;
MAKINO, Y ;
KISHIMOTO, T ;
YAMAUCHI, J ;
KATO, S ;
MURAMATSU, M ;
TAMURA, T .
NUCLEIC ACIDS RESEARCH, 1994, 22 (07) :1179-1185