Modulating calcitonin fibrillogenesis: an antiparallel a-helical dimer inhibits fibrillation of salmon calcitonin.
Articolo
Data di Pubblicazione:
2004
Abstract:
We have investigated the prefibrillar state of salmon
(s) and human (h) calcitonin (CT). Size exclusion chromatography
at pH 3.3 and 7.4 indicates that sCT is present
in solution as a dimer, whereas hCT elutes as a
monomer at pH 3.3 and as monomer-dimer at pH 7.4.
Guanidine hydrochloride unfolding experiments show
that dimerization is stabilized by hydrophobic interactions.
We investigated the dimeric structure by multidimensional
nuclear magnetic resonance spectroscopy
and calculations by using an sCT mutant (LAsCT) in
which Pro23 and Arg24 were substituted for Leu23 and
Ala24. As indicated by the Leu9-Tyr27 and Leu12-Leu19
contacts, the mutated hormone forms a head-to-tail
dimer whose basic unit is an -helix in the region Leu12-
Tyr22. The solution behavior of LAsCT is identical to
that of sCT, so the dimeric structure can safely be extended
to sCT: we believe that such a structure inhibits
fibril maturation in sCT. No stable dimer was observed
for hCT, which we attributed to the absence of a defined
helical structure. However, we suggest that intermolecular
collisions of short ordered regions (for example, a
sequence of turns) in hCT favors intermolecular contacts,
and specific orientation can be obtained through
hydrogen bond formation involving Tyr12, Phe16, and
Phe19, with the aromatic ring acting as an acceptor.
Taken together, our results indicate that hCT fibrillation
can be reduced by favoring a helical dimer, obtainable
by replacing the three aromatic amino acids with
leucines.
Tipologia CRIS:
01.01 Articolo in rivista
Elenco autori:
Andreotti, Giuseppina; Motta, Andrea
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