Publication:

Structure of cytochrome c6A, a novel dithio-cytochrome of Arabidopsis thaliana, and its reactivity with plastocyanin: implications for function

cris.lastimport.scopus

2024-08-09T10:42:25Z

cris.legacyId

223016

cris.virtual.parent-organization

SV

cris.virtual.parent-organization

EPFL

cris.virtual.unitId

10949

cris.virtual.unitManager

Dal Peraro, Matteo

cris.virtualsource.parent-organization

251a944e-5f6d-48cf-ab11-c4790eb39345

cris.virtualsource.parent-organization

251a944e-5f6d-48cf-ab11-c4790eb39345

cris.virtualsource.parent-organization

251a944e-5f6d-48cf-ab11-c4790eb39345

cris.virtualsource.unitId

251a944e-5f6d-48cf-ab11-c4790eb39345

cris.virtualsource.unitManager

251a944e-5f6d-48cf-ab11-c4790eb39345

datacite.rights

metadata-only

dc.contributor.author

Marcaida, Maria J

dc.contributor.author

Schlarb-Ridley, Beatrix G

dc.contributor.author

Worrall, Jonathan A R

dc.contributor.author

Wastl, Juergen

dc.contributor.author

Evans, Terry J

dc.contributor.author

Bendall, Derek S

dc.contributor.author

Luisi, Ben F

dc.contributor.author

Howe, Christopher J

dc.date.accessioned

2016-11-17T22:17:08

dc.date.available

2016-11-17T22:17:08

dc.date.created

2016-11-17

dc.date.issued

2006

dc.date.modified

2024-10-18T09:42:07.578281Z

dc.description.abstract

Cytochrome c6A is a unique dithio-cytochrome present in land plants and some green algae. Its sequence and occurrence in the thylakoid lumen suggest that it is derived from cytochrome c6, which functions in photosynthetic electron transfer between the cytochrome b6f complex and photosystem I. Its known properties, however, and a strong indication that the disulfide group is not purely structural, indicate that it has a different, unidentified function. To help in the elucidation of this function the crystal structure of cytochrome c6A from Arabidopsis thaliana has been determined in the two redox states of the heme group, at resolutions of 1.2 A (ferric) and 1.4 A (ferrous). These two structures were virtually identical, leading to the functionally important conclusion that the heme and disulfide groups do not communicate by conformational change. They also show, however, that electron transfer between the reduced disulfide and the heme is feasible. We therefore suggest that the role of cytochrome c6A is to use its disulfide group to oxidize dithiol/disulfide groups of other proteins of the thylakoid lumen, followed by internal electron transfer from the dithiol to the heme, and re-oxidation of the heme by another thylakoid oxidant. Consistent with this model, we found a rapid electron transfer between ferro-cytochrome c6A and plastocyanin, with a second-order rate constant, k2=1.2 x 10(7) M(-1) s(-1).

dc.description.sponsorship

IBI-SV

dc.identifier.doi

10.1016/j.jmb.2006.05.065

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/131172

dc.publisher

Elsevier

dc.relation.issn

0022-2836

dc.relation.journal

Journal of molecular biology

dc.subject

Models

dc.subject

Molecular

dc.title

Structure of cytochrome c6A, a novel dithio-cytochrome of Arabidopsis thaliana, and its reactivity with plastocyanin: implications for function

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

dspace.legacy.oai-identifier

oai:infoscience.tind.io:223016

epfl.legacy.itemtype

Journal Articles

epfl.legacy.submissionform

ARTICLE

epfl.oai.currentset

OpenAIREv4

epfl.oai.currentset

SV

epfl.oai.currentset

article

epfl.peerreviewed

NON-REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.endPage

77

oaire.citation.issue

5

oaire.citation.startPage

968

oaire.citation.volume

360

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