Nitrogen oxide interaction with copper complexes formed by small peptides belonging to the prion protein octa-repeat region

被引:10
作者
Bonomo, Raffaele P.
Pappalardo, Giuseppe
Rizzarelli, Enrico
Santoro, Anna M.
Tabbi, Giovanni
Vagliasindi, Laura I.
机构
[1] Univ Catania, Dipartimento Sci Chim, I-95125 Catania, Italy
[2] CNR, Ist Biostrutt & Bioimmagini, Sez Catania, I-95125 Catania, Italy
关键词
D O I
10.1039/b617408f
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The interaction between NO and copper(II) complexes formed by peptides coming from the N-terminal prion protein octa-repeat region was studied. Aqueous solutions of the Cu-Ac-HGGG-NH2 and the Cu-Ac-PHGGGWGQ-NH2 systems around pH 7.5 were tested after the addition of NONOates as a source of NO. UV-Vis, room temperature and frozen solution EPR spectra showed the occurrence of copper(II) reduction in all these complexes. The reduction of these complexes is probably mediated by the formation of a labile NO adduct, which, after re-oxidation, leads to a relatively stable NO2- adduct through the apical coordination along the void site of their square pyramidal structure. In fact, the most significant shifts in EPR magnetic parameters (g(parallel to) and A(parallel to) or g(iso) and A(iso)) as well as in the optical parameters (lambda(max) and epsilon(max)) gave a reason for geometrical changes of the copper coordination polyhedron from a distorted square pyramid to a pseudo-octahedron. The presence of oxygen in the aqueous solution hindered the reduction ability of NO towards copper, but it made it easier to return to the original species. In order to elucidate the possible mechanism of this interaction, the reduction of copper complexed by these ligands was followed by means of zinc powder addition. The further addition of nitrite to the solution containing reduced copper led to the conclusion that nitrite could easily form an adduct, which after re-oxidation presented the same spectral features of the species obtained when the NO interaction was followed. The complexity of this interaction could involve both an inner or an outer-sphere electron transfer mechanism.
引用
收藏
页码:1400 / 1408
页数:9
相关论文
共 37 条
[1]  
Beckman JS, 1996, AM J PHYSIOL-CELL PH, V271, pC1424
[2]   MOLECULAR MECHANICS CALCULATIONS OF TRANSITION-METAL COMPLEXES [J].
BERNHARDT, PV ;
COMBA, P .
INORGANIC CHEMISTRY, 1992, 31 (12) :2638-2644
[3]   ELECTRON-PARAMAGNETIC-RES REINVESTIGATION OF THE COPPER(II) IMIDAZOLE SYSTEM [J].
BONOMO, RP ;
RIGGI, F ;
DIBILIO, AJ .
INORGANIC CHEMISTRY, 1988, 27 (14) :2510-2512
[4]   A re-investigation of copper coordination in the octa-repeats region of the prion protein [J].
Bonomo, RP ;
Cucinotta, V ;
Giuffrida, A ;
Impellizzeri, G ;
Magrì, A ;
Pappalardo, G ;
Rizzarelli, E ;
Santoro, AM ;
Tabbì, G ;
Vagliasindi, LI .
DALTON TRANSACTIONS, 2005, (01) :150-158
[5]   A spectroscopic investigation of the interaction between nitrogen monoxide and copper sites of the fungal laccase from Rigidoporus lignosus [J].
Bonomo, RP ;
Castronovo, BMG ;
Santoro, AM .
DALTON TRANSACTIONS, 2004, (01) :104-112
[6]  
Bonomo RP, 2000, CHEM-EUR J, V6, P4195, DOI 10.1002/1521-3765(20001117)6:22<4195::AID-CHEM4195>3.0.CO
[7]  
2-2
[8]   Consequences of manganese replacement of copper for prion protein function and proteinase resistance [J].
Brown, DR ;
Hafiz, F ;
Glasssmith, LL ;
Wong, BS ;
Jones, IM ;
Clive, C ;
Haswell, SJ .
EMBO JOURNAL, 2000, 19 (06) :1180-1186
[9]   Molecular features of the copper binding sites in the octarepeat domain of the prion protein [J].
Burns, CS ;
Aronoff-Spencer, E ;
Dunham, CM ;
Lario, P ;
Avdievich, NI ;
Antholine, WE ;
Olmstead, MM ;
Vrielink, A ;
Gerfen, GJ ;
Peisach, J ;
Scott, WG ;
Millhauser, GL .
BIOCHEMISTRY, 2002, 41 (12) :3991-4001
[10]   Copper coordination in the full-length, recombinant prion protein [J].
Burns, CS ;
Aronoff-Spencer, E ;
Legname, G ;
Prusiner, SB ;
Antholine, WE ;
Gerfen, GJ ;
Peisach, J ;
Millhauser, GL .
BIOCHEMISTRY, 2003, 42 (22) :6794-6803