Structure and stability of a thioredoxin reductase from Sulfolobus solfataricus: A thermostable protein with two functions
Articolo
Data di Pubblicazione:
2009
Abstract:
Recent investigations have demonstrated that disulfide bridges may play a crucial role in the stabilization of
proteins in hyperthermophilic organisms. A major role in the process of disulfide formation is played by
ubiquitous proteins belonging to the thioredoxin superfamily, which includes thioredoxins (Trx), thioredoxin
reductases (TrxR), and disulfide oxidases/isomerases (PDO/PDI). Here we report a characterization of the
structure and stability of the TrxR (SsTrxRB3) isolated from the archaeon Sulfolobus solfataricus. This protein
is particularly interesting since it is able to process different substrates (Trxs and PDO) and it is endowed with
an additional NADH oxidase activity. The crystal structure of the wild-type enzyme, of its complex with NADP
and of the C147A mutant provides interesting clues on the enzyme function. In contrast to what is observed
for class II TrxRs, in the structure of the oxidized enzyme, the FAD binding site is occupied by a partially
disordered NAD molecule. In the active site of the C147A mutant, which exhibits a marginal NADH oxidase
activity, the FAD is canonically bound to the enzyme. Molecular modeling indicates that a FAD molecule can
be accommodated in the site of the reduced SsTrxRB3. Depending on the oxidation state, SsTrxRB3 can bind a
different cofactor in its active site. This peculiar feature has been related to its dual activity. Denaturation
experiments followed by circular dichroism indicate that electrostatic interactions play an important role in
the stabilization of this thermostable protein. The analysis of the enzyme 3D-structure has also provided
insights into the bases of SsTrxRB3 stability.
Tipologia CRIS:
01.01 Articolo in rivista
Elenco autori:
Zagari, Adriana; Vitagliano, Luigi
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