Hydrogen/deuterium exchange study of subtilisin Carlsberg during prolonged exposure to organic solvents

Biotechnol Bioeng. 2009 Mar 1;102(4):1025-32. doi: 10.1002/bit.22147.

Abstract

It has been previously reported that prolonged exposure of an enzyme to organic solvents leads to substantial decrease of activity. This effect was found to be unrelated to the catalysts' structure or their possible aggregation in organic solvents, and up to the present day the cause for activity loss remains unclear. In the present work, the structural dynamics of the serine protease subtilisin Carlsberg (SC) have been investigated during prolonged exposure to two organic solvents by following hydrogen/deuterium (H/D) exchange of mobile protons. The enzyme, after lyophilization, was incubated in organic solvents at controlled deuteriated water activity for different times and the H/D exchange was allowed to take place. The amount of deuterium exchanged was evaluated by (2)H NMR, which in turn gave us a picture of the changing dynamics of our model enzyme during incubation and under different experimental conditions. Our results show that the flexibility of SC decreases during prolonged storage in 1,4-dioxane (Diox) and acetonitrile (ACN) as indicated by the observed 3- to 10-fold decrease in the apparent rate constants of exchange (k) of fast exchangeable protons (FEP) and slow exchangeable protons (SEP) in the protein. Our study also shows that SC is more flexible in ACN than in Diox (k 3-20 times higher in ACN for the FEP and SEP), suggesting that enzyme dynamics are affected by solvent physicochemical properties. Additionally, the enzyme dynamics are also affected by the method of preparation: decreased flexibility (k decreases 3- to 10-fold for FEP and SEP) is observed when the enzyme is chemically modified with poly ethylene glycol (PEGylated) or colyophilized with crown ethers. A possible relationship between activity, enantioselectivity (E), and structural dynamics is discussed, demonstrating that direct correlations, as have been attempted in the past, are hampered by the multi-variable nature and complexity of the system.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Acetonitriles / pharmacology
  • Deuterium / metabolism*
  • Dioxanes / pharmacology
  • Enzyme Inhibitors / pharmacology
  • Hydrogen / metabolism*
  • Kinetics
  • Magnetic Resonance Spectroscopy
  • Solvents / pharmacology
  • Subtilisins / chemistry*
  • Subtilisins / metabolism*
  • United States

Substances

  • Acetonitriles
  • Dioxanes
  • Enzyme Inhibitors
  • Solvents
  • Hydrogen
  • Deuterium
  • Subtilisins
  • 1,4-dioxane
  • acetonitrile