pH dependence of structural and functional properties of oxidized cytochrome c'' from Methylophilus methylotrophus

被引:19
作者
Coletta, M
Costa, H
DeSanctis, G
Neri, F
Smulevich, G
Turner, DL
Santos, H
机构
[1] UNIV ROMA LA SAPIENZA,DEPT BIOCHEM SCI ALESSANDRO ROSSI FANELLI,I-00185 ROME,ITALY
[2] UNIV NOVA LISBOA,INST TECNOL QUIM & BIOL,P-2780 OEIRAS,PORTUGAL
[3] UNIV CAMERINO,DEPT MOL CELLULAR & ANIM BIOL,I-62032 CAMERINO,MC,ITALY
[4] UNIV FLORENCE,DEPT CHEM,I-52100 FLORENCE,ITALY
[5] UNIV SOUTHAMPTON,DEPT CHEM,SOUTHAMPTON SO9 5NH,HANTS,ENGLAND
关键词
D O I
10.1074/jbc.272.40.24800
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cytochrome c '' from Methylophilus methylotrophus is an unusual monoheme protein that undergoes a major redox-linked change in the heme arrangement: one of the two axial histidines bound to the iron in the oxidized form is detached upon reduction and a proton is taken up. The kinetics of reduction by sodium dithionite and the spectroscopic properties of the oxidized cytochrome c '' have been investigated over the pH range between 1.4 and 10.0, The rate of reduction displays proton-linked transitions of pK(a) congruent to 5.5 and 2.4, and a spectroscopic transition with a pK(a) congruent to 2.4 is also observed. The protein displays a complete reversibility after exposure to low pH, and both electronic absorption and resonance Raman spectroscopic properties suggest that the transition at lower pH brings about a drastic change in the heme coordination geometry, Circular dichroism spectra indicate that over the same proton-linked transition, the pro tein undergoes a marked decrease (similar to 60%) of the alpha-helical content toward a random coil arrangement, which is recovered upon increasing the ionic strength, The structural change at low pH is Linked to a concerted two-proton transition, suggesting the detachment and protonation of axial histidine(s), Such kinetic and spectroscopic features along with the remarkable capacity of this protein to recover its native structure after exposure to extremely low pH values makes it a promising model for studying folding processes and stability in heme proteins.
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页码:24800 / 24804
页数:5
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