The solution structure of a copper(II) compound of a new cyclic octapeptide by EPR spectroscopy and force field calculations


Autoria(s): Comba, P; Cusack, R; Fairlie, DP; Gahan, LR; Hanson, GR; Kazmaier, U; Ramlow, A
Data(s)

01/01/1998

Resumo

A new cyclic octapeptide, cyclo(Ile-Ser-(Gly)Thz-Ile-Thr-(Gly)Thz) (PatN), related to patellamide A, has been synthesized and reacted with copper(II) and base to form mono- and dinuclear complexes. The coordination environments around copper(TI) have been characterized by EPR spectroscopy. The solution structure of the thermodynamically most stable product, a purple dicopper(TI) compound, has been examined by simulating weakly dipole-dipole coupled EPR spectra based upon structural parameters obtained from force field (MM and MD) calculations. The MM-EPR method produces a saddle-shaped structure for [Cu-2(PatN)(OH2)(6)] that is similar to the known solution structure of patellamide A and the known solid-state structure of [Cu-2(AscidH(2))CO3(OH2)(2)]. Compared with the latter, [Cu-2(PatN)] has no carbonate bridge and a significantly flatter topology. The MM-EPR approach to solution-structure determination for paramagnetic metallopeptides may find wide applications to other metallopeptides and metalloproteins.

Identificador

http://espace.library.uq.edu.au/view/UQ:35299

Idioma(s)

eng

Palavras-Chave #Chemistry, Inorganic & Nuclear #Ascidian Lissoclinum-patella #Electron-paramagnetic-resonance #Ionization Mass-spectrometry #Coupling Reagents #Solid-state #Natural-products #Peptide #Conformations #Ascidiacyclamide #Complexes
Tipo

Journal Article