2c1d

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==Overview==
==Overview==
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The sulfur-oxidizing enzyme system (Sox) of the chemotroph Paracoccus, pantotrophus is composed of several proteins, which together oxidize, hydrogen sulfide, sulfur, thiosulfate or sulfite and transfers the gained, electrons to the respiratory chain. The hetero-dimeric cytochrome c, complex SoxXA functions as heme enzyme and links covalently the sulfur, substrate to the thiol of the cysteine-138 residue of the SoxY protein of, the SoxYZ complex. Here, we report the crystal structure of the c-type, cytochrome complex SoxXA. The structure could be solved by molecular, replacement and refined to a resolution of 1.9A identifying the axial, heme-iron coordination involving an unusual Cys-251 thiolate of heme2., Distance measurements between the three heme groups provide deeper insight, into the electron transport inside SoxXA and merge in a better, understanding of the initial step of the aerobic sulfur oxidation process, in chemotrophic bacteria.
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The sulfur-oxidizing enzyme system (Sox) of the chemotroph Paracoccus pantotrophus is composed of several proteins, which together oxidize hydrogen sulfide, sulfur, thiosulfate or sulfite and transfers the gained electrons to the respiratory chain. The hetero-dimeric cytochrome c complex SoxXA functions as heme enzyme and links covalently the sulfur substrate to the thiol of the cysteine-138 residue of the SoxY protein of the SoxYZ complex. Here, we report the crystal structure of the c-type cytochrome complex SoxXA. The structure could be solved by molecular replacement and refined to a resolution of 1.9A identifying the axial heme-iron coordination involving an unusual Cys-251 thiolate of heme2. Distance measurements between the three heme groups provide deeper insight into the electron transport inside SoxXA and merge in a better understanding of the initial step of the aerobic sulfur oxidation process in chemotrophic bacteria.
==About this Structure==
==About this Structure==
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[[Category: Quentmeier, A.]]
[[Category: Quentmeier, A.]]
[[Category: Rother, D.]]
[[Category: Rother, D.]]
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[[Category: Scheidig, A.J.]]
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[[Category: Scheidig, A J.]]
[[Category: HEC]]
[[Category: HEC]]
[[Category: ZN]]
[[Category: ZN]]
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[[Category: sulfur oxidation]]
[[Category: sulfur oxidation]]
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun Feb 3 10:30:16 2008''
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 16:43:49 2008''

Revision as of 14:43, 21 February 2008


2c1d, resolution 1.92Å

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CRYSTAL STRUCTURE OF SOXXA FROM P. PANTOTROPHUS

Overview

The sulfur-oxidizing enzyme system (Sox) of the chemotroph Paracoccus pantotrophus is composed of several proteins, which together oxidize hydrogen sulfide, sulfur, thiosulfate or sulfite and transfers the gained electrons to the respiratory chain. The hetero-dimeric cytochrome c complex SoxXA functions as heme enzyme and links covalently the sulfur substrate to the thiol of the cysteine-138 residue of the SoxY protein of the SoxYZ complex. Here, we report the crystal structure of the c-type cytochrome complex SoxXA. The structure could be solved by molecular replacement and refined to a resolution of 1.9A identifying the axial heme-iron coordination involving an unusual Cys-251 thiolate of heme2. Distance measurements between the three heme groups provide deeper insight into the electron transport inside SoxXA and merge in a better understanding of the initial step of the aerobic sulfur oxidation process in chemotrophic bacteria.

About this Structure

2C1D is a Protein complex structure of sequences from Paracoccus denitrificans and Paracoccus pantotrophus with and as ligands. Known structural/functional Site: . Full crystallographic information is available from OCA.

Reference

Structure of the cytochrome complex SoxXA of Paracoccus pantotrophus, a heme enzyme initiating chemotrophic sulfur oxidation., Dambe T, Quentmeier A, Rother D, Friedrich C, Scheidig AJ, J Struct Biol. 2005 Dec;152(3):229-34. Epub 2005 Nov 2. PMID:16297640

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