EFFECTS OF SURFACE AMINO-ACID REPLACEMENTS IN CYTOCHROME-C PEROXIDASE ON COMPLEX-FORMATION WITH CYTOCHROME-C

被引:49
作者
CORIN, AF
MCLENDON, G
ZHANG, QP
HAKE, RA
FALVO, J
LU, KS
CICCARELLI, RB
HOLZSCHU, D
机构
[1] UNIV ROCHESTER,NSF CTR PHOTOINDUCED CHARGE TRANSFER,ROCHESTER,NY 14627
[2] UNIV ROCHESTER,DEPT CHEM,ROCHESTER,NY 14627
关键词
D O I
10.1021/bi00113a014
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
Site-directed mutagenesis was employed to examine the role played by specific surface residues in the activity of cytochrome c peroxidase. The double charge, aspartic acid to lysine, point mutations were constructed at positions 37, 79, and 217 on the surface of cytochrome c peroxidase, sites purported to be within or proximal to the recognition site for cytochrome c in an electron-transfer productive complex formed by the two proteins. The resulting mutant peroxidases were examined for catalytic activity by steady-state measurements and binding affinity by two methods, fluorescence binding titration and cytochrome c affinity chromatography. The cloned peroxidases exhibit similar UV-visible spectra to the wild-type yeast protein, indicating that there are no major structural differences between the cloned peroxidases and the wild-type enzyme. The aspartic acid to lysine mutations at positions 79 and 217 exhibited similar turnover numbers and binding affinities to that seen for the "wild type-like" cloned peroxidase. The same change at position 37 caused more than a 10-fold decrease in both turnover of and binding affinity for cytochrome c. This empirical finding localizes a primary recognition region critical to the dynamic complex. Models from the literature proposing structures for the complex between peroxidase and cytochrome c are discussed in light of these findings.
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页码:11585 / 11595
页数:11
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