KINETIC-THEORY OF ATP-DRIVEN TRANSLOCASES ON ONE-DIMENSIONAL POLYMER LATTICES

被引:56
作者
YOUNG, MC
KUHL, SB
VONHIPPEL, PH
机构
[1] UNIV OREGON,INST MOLEC BIOL,EUGENE,OR 97402
[2] UNIV OREGON,DEPT CHEM,EUGENE,OR 97402
关键词
TRANSLOCASE; ATPASE; ONE-DIMENSIONAL DIFFUSION; KINETIC PARAMETERS;
D O I
10.1006/jmbi.1994.1099
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 theory is presented to describe the coupling of the directional movement of ATPase-containing translocases (such as helicases) along polymeric lattices to the steady-state kinetic parameters of the ATPase activity that drives this movement. This theory was developed to explain the results of an experimental investigation of one such enzyme, the bacteriophage T4 gene 41 protein helicase. The salient feature of the theory is that it correctly predicts the dependence of the rate of ATP hydrolysis by ATP-driven translocases on the length of polymer lattices along which they move. In the steady-state rate equation: v=V(max)[Lat]/K(act)+[Lat], either V(max), or K(act), or both, may depend on the lattice length. Two translocation models are considered. The first is a simple mechanism of the type E←→E-Lat→E, where the E-Lat→E step represents the sum of the translocation steps of the enzyme along, and enzyme release from, the lattice. In the second model this mechanism is expanded to add an additional kinetic step, either before or after the translocation process. Variants of this second model can be used to represent the most simple translocase mechanisms. Another method of measuring the lattice length dependence of an ATP-driven translocase, which is applicable particularly to ATPases moving along DNA lattices, involves the use of lattice-binding proteins (such as single-stranded DNA binding proteins) that can block the movement of the translocases and therefore simulate lattice ends. In this protocol the dependence of the ATPase kinetics of the translocase on lattice length can be studied by experiments on long lattices complexed with lattice-binding proteins to various binding densities. This method is not always as unambiguous as direct measurement of ATPase activity on lattices of defined length, but can help to discriminate between mechanisms. The significance of the steady-state kinetic parameters obtained in such experiments is discussed in terms of the mechanistic rate constants that define the models we have investigated. © 1994 Academic Press Limited.
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页码:1436 / 1446
页数:11
相关论文
共 26 条
[1]   UNSCRAMBLING THE PUZZLE OF BIOLOGICAL MACHINES - THE IMPORTANCE OF THE DETAILS [J].
ALBERTS, B ;
MIAKELYE, R .
CELL, 1992, 68 (03) :415-420
[2]  
Berg H. C., 1983, RANDOM WALKS BIOL, P42
[3]   PARTITION ANALYSIS AND CONCEPT OF NET RATE CONSTANTS AS TOOLS IN ENZYME-KINETICS [J].
CLELAND, WW .
BIOCHEMISTRY, 1975, 14 (14) :3220-3224
[4]   ON THE PROCESSIVITY OF DNA-REPLICATION [J].
FAIRFIELD, FR ;
NEWPORT, JW ;
DOLEJSI, MK ;
VONHIPPEL, PH .
JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 1983, 1 (03) :715-727
[5]   A PHYSICAL MODEL FOR THE TRANSLOCATION AND HELICASE ACTIVITIES OF ESCHERICHIA-COLI TRANSCRIPTION TERMINATION PROTEIN-RHO [J].
GEISELMANN, J ;
WANG, Y ;
SEIFRIED, SE ;
VONHIPPEL, PH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (16) :7754-7758
[6]  
HIBBERD MG, 1986, ANNU REV BIOPHYS BIO, V15, P119
[7]   THEORETICAL ASPECTS OF TRANSLOCATION ON DNA - ADENOSINE TRIPHOSPHATASES AND TREADMILLING BINDING-PROTEINS [J].
HILL, TL ;
TSUCHIYA, T .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1981, 78 (08) :4796-4800
[8]   MECHANISM OF MUSCULAR CONTRACTION [J].
HUXLEY, HE .
SCIENCE, 1969, 164 (3886) :1356-&
[9]  
Jencks W P, 1980, Adv Enzymol Relat Areas Mol Biol, V51, P75
[10]  
KELLY RC, 1976, J BIOL CHEM, V251, P7240