MECHANISM OF INTERACTION BETWEEN CYTOCHROMES P-450-RLM5 AND B5 - EVIDENCE FOR AN ELECTROSTATIC MECHANISM INVOLVING CYTOCHROME B5 HEME PROPIONATE GROUPS

被引:34
作者
TAMBURINI, PP
SCHENKMAN, JB
机构
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D O I
10.1016/0003-9861(86)90244-4
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
The role of cytochrome b5 heme propionate groups in the functional interactions between cytochromes P-450 RLM5 and b5 has been investigated by comparing the capacity of RLM5 to interact with both native b5 and a b5 derivative in which the native heme was replaced with ferric protoporphyrin IX dimethyl ester (DME-b5). Both forms of b5 interacted with RLM5 causing an increase in the RLM5 spin state from 28 to 68% high-spin RLM5 at saturation, as judged using uv-visible spectrophotometry. However, DME-b5 exhibited a 7-fold weaker affinity for RLM5. The apparent dissociation constant (Kd) for the interaction between RLM5 and b5 was also shown to be a strong function of ionic strength, in a manner consistent with the involvement of electrostatic attraction in complex formation. Reconstitution of b5 into an RLM5-dependent monooxygenase system stimulated the p-nitroanisole demethylate rate about 25-fold and 7-ethoxycoumarin deethylase about 6-fold. DME-b5, however, produced only 30% of the stimulation of RLM5-dependent turnover of p-nitroanisole observed at equivalent concentrations of native b5 without a change in Km. With 7-ethoxycoumarin, turnover was 50% diminished. The diminished capacity of DME-b5 to stimulate RLM5-dependent substrate turnover was shown not to be due to impairment of electron flow between NADPH-cytochrome P-450 reductase and DME-b5, since the Km of reductase for DME-b5 is 2.5-fold lower, and the Vmax is actually increased, but rather to an impairment of some aspect of functional interaction between the DME-b5 and RLM5. The data show that complex formation between cytochrome P-450 and b5 involves electrostatic attraction mediated in part by cytochrome b5 heme propionate groups.
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页码:512 / 522
页数:11
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共 44 条
[1]  
ARGOS P, 1975, J BIOL CHEM, V250, P747
[2]   EFFECT OF HIGH SALT CONCENTRATIONS UPON CYTOCHROME C, CYTOCHROME B5, AND IRON-EDTA REDUCTASE ACTIVITIES OF LIVER MICROSOMAL NADPH-CYTOCHROME C REDUCTASE [J].
BILIMORIA, MH ;
KAMIN, H .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1973, 212 (JUN22) :428-448
[3]  
BONFILS C, 1981, J BIOL CHEM, V256, P9457
[4]  
BOSTERLING B, 1982, J BIOL CHEM, V257, P4783
[5]  
BOSTERLING B, 1982, J BIOL CHEM, V257, P4375
[6]  
CANTO CB, 1980, BIOPHYSICAL CHEM, V1
[7]  
CHENG KC, 1982, J BIOL CHEM, V257, P2378
[9]   TEMPERATURE-DEPENDENT SPIN EQUILIBRIUM OF MICROSOMAL AND SOLUBILIZED CYTOCHROME-P-450 FROM RAT-LIVER [J].
CINTI, DL ;
SLIGAR, SG ;
GIBSON, GG ;
SCHENKMAN, JB .
BIOCHEMISTRY, 1979, 18 (01) :36-42
[10]   BINDING OF HOMOGENEOUS CYTOCHROME-B5 TO RAT-LIVER MICROSOMES - EFFECT ON N-DEMETHYLATION REACTIONS [J].
CINTI, DL ;
OZOLS, J .
BIOCHIMICA ET BIOPHYSICA ACTA, 1975, 410 (01) :32-44