login

Enzyme activity and dynamics: xylanase activity in the absence of fast anharmonic dynamics

Biochemical JournalPublished 22 February 2000Open access
Rachel V. Dunn, Valérie Réat, John Finney, Michel Ferrand, Jeremy C. Smith, Roy M. Daniel
Citations48
View PDF

TL;DR

The results indicate that a temperature range exists over which the enzyme rate-limiting step is independent of fast anharmonic dynamics.

Abstract

The activity and dynamics of a simple, single subunit enzyme, the xylanase from Thermotoga maritima strain Fj SS3B.1 have been measured under similar conditions, from -70 to +10 degrees C. The internal motions of the enzyme, as evidenced by neutron scattering, undergo a sharp transition within this temperature range; they show no evidence for picosecond-timescale anharmonic behaviour (e.g. local diffusive motions or jumps between alternative conformations) at temperatures below -50 degrees C, whereas these motions are strongly activated at higher temperatures. The activity follows Arrhenius behaviour over the whole of the temperature range investigated, -70 to +10 degrees C. The results indicate that a temperature range exists over which the enzyme rate-limiting step is independent of fast anharmonic dynamics.

Keywords

Biochemistry, Genetics and Molecular BiologyEngineering