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Energetic selection of topology in ferredoxins.
Kim, J Dongun; Rodriguez-Granillo, Agustina; Case, David A; Nanda, Vikas; Falkowski, Paul G.
Affiliation
  • Kim JD; Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, New Jersey, United States of America.
PLoS Comput Biol ; 8(4): e1002463, 2012.
Article in En | MEDLINE | ID: mdl-22496635
ABSTRACT
Models of early protein evolution posit the existence of short peptides that bound metals and ions and served as transporters, membranes or catalysts. The Cys-X-X-Cys-X-X-Cys heptapeptide located within bacterial ferredoxins, enclosing an Fe4S4 metal center, is an attractive candidate for such an early peptide. Ferredoxins are ancient proteins and the simple α+ß fold is found alone or as a domain in larger proteins throughout all three kingdoms of life. Previous analyses of the heptapeptide conformation in experimentally determined ferredoxin structures revealed a pervasive right-handed topology, despite the fact that the Fe4S4 cluster is achiral. Conformational enumeration of a model CGGCGGC heptapeptide bound to a cubane iron-sulfur cluster indicates both left-handed and right-handed folds could exist and have comparable stabilities. However, only the natural ferredoxin topology provides a significant network of backbone-to-cluster hydrogen bonds that would stabilize the metal-peptide complex. The optimal peptide configuration (alternating α(L),α(R)) is that of an α-sheet, providing an additional mechanism where oligomerization could stabilize the peptide and facilitate iron-sulfur cluster binding.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Models, Molecular / Evolution, Molecular / Ferredoxins / Models, Chemical / Models, Genetic Language: En Year: 2012 Type: Article

Full text: 1 Database: MEDLINE Main subject: Models, Molecular / Evolution, Molecular / Ferredoxins / Models, Chemical / Models, Genetic Language: En Year: 2012 Type: Article