6fdr: Difference between revisions

No edit summary
No edit summary
Line 1: Line 1:
[[Image:6fdr.gif|left|200px]]
{{Seed}}
[[Image:6fdr.png|left|200px]]


<!--
<!--
Line 9: Line 10:
{{STRUCTURE_6fdr|  PDB=6fdr  |  SCENE=  }}  
{{STRUCTURE_6fdr|  PDB=6fdr  |  SCENE=  }}  


'''7-FE FERREDOXIN FROM AZOTOBACTER VINELANDII AT 100K, NA DITHIONITE REDUCED AT PH 8.5, RESOLUTION 1.4 A'''
===7-FE FERREDOXIN FROM AZOTOBACTER VINELANDII AT 100K, NA DITHIONITE REDUCED AT PH 8.5, RESOLUTION 1.4 A===




==Overview==
<!--
The refined structure of reduced Azotobacter vinelandii 7Fe ferredoxin FdI at 100 K and 1.4 A resolution is reported, permitting comparison of [3Fe-4S]+ and [3Fe-4S]0 clusters in the same protein at near atomic resolution. The reduced state of the [3Fe-4S]0 cluster is established by single-crystal EPR following data collection. Redundant structures are refined to establish the reproducibility and accuracy of the results for both oxidation states. The structure of the [4Fe-4S]2+ cluster in four independently determined FdI structures is the same within the range of derived standard uncertainties, providing an internal control on the experimental methods and the refinement results. The structures of the [3Fe-4S]+ and [3Fe-4S]0 clusters are also the same within experimental error, indicating that the protein may be enforcing an entatic state upon this cluster, facilitating electron-transfer reactions. The structure of the FdI [3Fe-4S]0 cluster allows direct comparison with the structure of a well-characterized [Fe3S4]0 synthetic analogue compound. The [3Fe-4S]0 cluster displays significant distortions with respect to the [Fe3S4]0 analogue, further suggesting that the observed [3Fe-4S]+/0 geometry in FdI may represent an entatic state. Comparison of oxidized and reduced FdI reveals conformational changes at the protein surface in response to reduction of the [3Fe-4S]+/0 cluster. The carboxyl group of Asp15 rotates approximately 90 degrees, Lys84, a residue hydrogen bonded to Asp15, adopts a single conformation, and additional H2O molecules become ordered. These structural changes imply a mechanism for H+ transfer to the [3Fe-4S]0 cluster in agreement with electrochemical and spectroscopic results.
The line below this paragraph, {{ABSTRACT_PUBMED_10387068}}, adds the Publication Abstract to the page
(as it appears on PubMed at http://www.pubmed.gov), where 10387068 is the PubMed ID number.
-->
{{ABSTRACT_PUBMED_10387068}}


==About this Structure==
==About this Structure==
Line 28: Line 32:
[[Category: Electron transport]]
[[Category: Electron transport]]
[[Category: Iron-sulfur]]
[[Category: Iron-sulfur]]
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun May 4 22:40:20 2008''
 
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Jul 3 14:18:21 2008''

Proteopedia Page Contributors and Editors (what is this?)Proteopedia Page Contributors and Editors (what is this?)

OCA