Cytochrome c: Difference between revisions

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==Structural model of the [Fe]-hydrogenase/cytochrome C553 complex combining NMR and soft-docking<ref>PMID:10748163</ref>==
==Structural model of the [Fe]-hydrogenase/cytochrome C553 complex combining NMR and soft-docking<ref>PMID:10748163</ref>==
The <scene name='1e08/1e08-cofactors/1'>complex</scene> shows the specific interaction of the hydrogenase (light blue) with the cytochrome (pink), revealing the path of electron transport from the <scene name='1e08/1e08-activecluster/3'>active site metal cluster</scene>, through three iron-sulfur clusters, and ending in the cytochrome heme (colored red). Two <scene name='1e08/1e08-cys/2'>cysteine amino acids at the interface</scene>, CYS 38 in the hydrogenase and CYS10 in the cytochrome, are thought to provide the electron transfer pathway between the two proteins (these scenes were created by Jaime Prilusky, David S. Goodsell, and Eran Hodis).
The <scene name='1e08/1e08-cofactors/1'>complex</scene> shows the specific interaction of the hydrogenase (light blue) with the cytochrome (pink), revealing the path of electron transport from the <scene name='1e08/1e08-activecluster/3'>active site metal cluster</scene>, through three iron-sulfur clusters, and ending in the cytochrome heme (colored red). Two <scene name='1e08/1e08-cys/2'>cysteine amino acids at the interface</scene>, CYS 38 in the hydrogenase and CYS10 in the cytochrome, are thought to provide the electron transfer pathway between the two proteins (these scenes were created by Jaime Prilusky, David S. Goodsell, and Eran Hodis).
==  Conformational control of the binding of diatomic gases to cytochrome c’ <ref>PMID 25792378 </ref>==
</StructureSection>
</StructureSection>



Revision as of 12:58, 29 April 2015

Cytochrome c with heme complex with sulfate (PDB code 3cp5)

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3D structures of cytochrome C

Updated on 29-April-2015

References