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Triphosphates hydrolysis

Lymn, R.W. Taylor, E.W. Mechanism of adenosine triphosphate hydrolysis of actomyosin. Biochemistry 10 4617-4624, 1971. [Pg.298]

R. W., and Veech, R. L., 1973. The cqnitibrimn constants of the adenosine triphosphate hydrolysis and the aelenosine triphos-phate-eitrate lyase rc<7cfions. Journal of Biological Chemisti y 2A%i6966- 6972.)... [Pg.78]

Stein, L.A., Schwarz, R., Chock, P.B., Eisenberg, E. (1979). Mechanism of actomyosin adenosine triphosphatase. Evidence that adenosine 5 -triphosphate hydrolysis can occur without dissociation of the actomyosin complex. Biochemistry 18, 3895-3909. [Pg.237]

Schweins, T., Geyer, M., Kalbitzer, H. R., Wittinghofer, A., and Warshel, A. (1996). Linear free energy relationships in the intrinsic and GTPase activating protein-stimulated guanosine 5 -triphosphate hydrolysis of p21ras. Biochemistry 35, 14225-14231. [Pg.61]

Lymn, R. W., and Taylor, E. W. (1971). Mechanism of adenosine triphosphate hydrolysis... [Pg.191]

R. W. Guynn and R. L. Veech, The equilibrium constants of the adenosine triphosphate hydrolysis and the adenosine triphosphate-citrate lyase reactions, J. Biol. Chem. 248, 6966 6972 (1973). [Pg.190]

Several metalloproteins incorporate their metal centers by processes that appear to involve apoprotein-specific molecular chaperones (C). These proteins stabilize a required conformation of the target apoprotein, often catalyze nucleotide triphosphate hydrolysis, and dissociate after... [Pg.5513]

Thus, we see another example of how this domain has been recruited in evolution because of its ability to couple nucleoside triphosphate hydrolysis to conformational changes. [Pg.990]

Energy of triphosphate hydrolysis coupled to synthesis (Figure A7)... [Pg.2460]

Wolterman, G.H., Scott, R.A. and Haight, G.P. (1974) Coupling of adenosine triphosphate hydrolysis to a simple inorganic redox system Vanadyl ion(2+) +hydrogen peroxide. Journal of the American Chemical Society 96, 7569-7570. [Pg.88]

The adenylosuccinate synthetase reaction poses an interesting and general problem regarding the synthesis of carbon-nitrogen bonds coupled to nucleoside triphosphate hydrolysis. The three alternative mechanisms shown in Fig. 2 have been proposed for adenylosuccinate... [Pg.115]


See other pages where Triphosphates hydrolysis is mentioned: [Pg.578]    [Pg.239]    [Pg.239]    [Pg.125]    [Pg.58]    [Pg.84]    [Pg.252]    [Pg.522]    [Pg.578]    [Pg.5508]    [Pg.5509]    [Pg.330]    [Pg.682]    [Pg.232]    [Pg.284]    [Pg.5507]    [Pg.5508]    [Pg.7177]    [Pg.7220]    [Pg.7220]    [Pg.187]    [Pg.127]    [Pg.453]    [Pg.136]   


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Adenosine triphosphate , hydrolysis

Adenosine triphosphate , hydrolysis active transport

Adenosine triphosphate, coupled reactions hydrolysis

Adenosine triphosphates hydrolysis

Cytidine triphosphate hydrolysis

Equilibrium constants adenosine triphosphate hydrolysis

Guanosine triphosphate hydrolysis

Magnesium ions adenosine triphosphate hydrolysis

Thiamin triphosphate hydrolysis

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