Abstract

We have performed resonance Raman studies on ferrous NO- and CO-adducts of cytochrome P450(cam) and investigated the effects of diprotein complex formation with reduced putidaredoxin. We have found that the Fe-NO stretching mode of NO-P450(cam) can be resolved into two peaks at 551 and 561 cm(-1), and the binding of putidaredoxin increases the intensity of the high frequency component. Because the Fe-NO mode has been shown to be more sensitive to the nature of the heme proximal ligand than to the distal pocket environment, such a perturbation upon putidaredoxin binding is suggestive of changes in conformation or electronic structure that affect the proximal iron-cysteine bond. In accordance with this idea, the isotope shifts for the Fe-XO stretching and Fe-X-O bending modes (X = N or C) are insensitive to the presence or absence of putidaredoxin, indicating that the geometry of the Fe-X-O unit is not significantly altered by the complex formation. On the other hand, complex formation does induce a perturbation of the low frequency heme vibrational modes, suggesting that alterations of the heme electronic structure and/or geometry take place when putidaredoxin binds. We also find that cytochrome b(5) minimally affects the heme active site of the enzyme, although both putidaredoxin and cytochrome b(5) bind to the same or similar site on P450(cam). These observations suggest that there is a key specific interaction between P450(cam) and putidaredoxin, and that this interaction increases the population of a protein conformation that exhibits structural and/or electronic distortions of the heme group associated with the proximal side of the heme pocket and the S --> Fe electron donation. These electronic and structural changes are potentially correlated with H-bonding to the proximal cysteine.

Highlights

  • We have performed resonance Raman studies on ferrous NO- and CO-adducts of cytochrome P450cam and investigated the effects of diprotein complex formation with reduced putidaredoxin

  • We have found that the Fe-NO stretching mode of NO-P450cam can be resolved into two peaks at 551 and 561 cm؊1, and the binding of putidaredoxin increases the intensity of the high frequency component

  • We have shown that the diprotein complex formation between ferric P450cam and oxidized Pd affects the stretching frequency of the heme iron-proximal Cys357 (Fe-S) bond [6]

Read more

Summary

Introduction

We have performed resonance Raman studies on ferrous NO- and CO-adducts of cytochrome P450cam and investigated the effects of diprotein complex formation with reduced putidaredoxin. Because the Fe-NO mode has been shown to be more sensitive to the nature of the heme proximal ligand than to the distal pocket environment, such a perturbation upon putidaredoxin binding is suggestive of changes in conformation or electronic structure that affect the proximal iron-cysteine bond. In accordance with this idea, the isotope shifts for the Fe-XO stretching and Fe-X–O bending modes (X ‫ ؍‬N or C) are insensitive to the presence or absence of putidaredoxin, indicating that the geometry of the Fe-X–O unit is not significantly altered by the complex formation. Because these ligands have been shown to be highly sensitive to the distal pocket environment of heme proteins (5, 16 –18), it is possible that Pd-induced structural changes in the distal pocket are responsible for the observed complex formation effects

Methods
Results
Conclusion
Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.