Published 2004 | Version v1
Miscellaneous

High order quaternary arrangement confers increased structural stability to Brucella Spp. lumazine synthase

  • 1. Instituto Leloir, Buenos Aires (Argentina)
  • 2. Bowie State Univ., Maryland (United States)

Description

The penultimate step in the pathway of riboflavin biosynthesis is catalyzed by the enzyme lumazine synthase (LS). One of the most distinctive characteristics of this enzyme is the structural quaternary divergence found in different species. The protein exists as pentameric and icosahedral forms, built from practically the same structural monomeric unit. The pentameric structure is formed by five 18 kDa monomers, each extensively contacting neighboring monomers. The icosahedral structure consists of 60 LS monomers arranged as twelve pentamers giving rise to a capsid exhibiting icosahedral 532 symmetry. In all lumazine synthases studied, the topologically equivalent active sites are located at the interfaces between adjacent subunits in the pentameric modules. The Brucella spp. lumazine synthase (BLS) sequence clearly diverges from pentameric and icosahedral enzymes. This unusual divergence prompted to further investigate on its quaternary arrangement. In the present work, we demonstrate by means of solution Light Scattering and X-ray structural analyses that BLS assembles as a very stable dimer of pentamers representing a third category of quaternary assembly for lumazine synthases. We also describe by spectroscopic studies the thermodynamic stability of this oligomeric protein, and postulate a mechanism for dissociation/unfolding of this macromolecular assembly. The higher molecular order of BLS increases its stability 20 deg C compared to pentameric lumazine synthases. The decameric arrangement described in this work highlights the importance of quaternary interactions in the stabilization of proteins. (author)

Part of:
Activity Report 2004 - LNLS - Brazilian Synchrotron Light Laboratory

Additional details

Publishing Information

Imprint Title
Activity Report 2004 - LNLS - Brazilian Synchrotron Light Laboratory
Imprint Pagination
109 p.
Journal Page Range
p. 12-15

Optional Information

Notes
1 ref., 4 figs.