[[Ferredoxin]] (Fd) is found in chloroplasts which mediates electron transfer and contains an iron-sulfur cluster. It is involved in the photosynthesis process where its iron atoms accept or discharge electrons when they are being oxidized or reduced. The iron-sulfur cluster can contain 2Fe-2S and is termed plant-like or 3Fe-4S or 4Fe-4S clusters.
[[Ferredoxin]] (Fd) is found in chloroplasts which mediates electron transfer and contains an iron-sulfur cluster. It is involved in the photosynthesis process where its iron atoms accept or discharge electrons when they are being oxidized or reduced. The iron-sulfur cluster can contain 2Fe-2S and is termed plant-like or 3Fe-4S or 4Fe-4S clusters.
*'''Adrenodoxin''' (ADR) is a ferredoxin containing a 2Fe-2S group involved in electron transfer from NADPH+ to a cytochrome P-450 in the adrenal gland<ref>PMID:22556163</ref>..
*'''Adrenodoxin''' (ADR) is a ferredoxin containing a 2Fe-2S group involved in electron transfer from NADPH+ to a cytochrome P-450 in the adrenal gland<ref>PMID:22556163</ref>..
*'''Putidaredoxin''' (PUT) and '''terpredoxin''' (TER) are involved in the same reaction in bacteria and contain a 2Fe-2S group.
*'''Putidaredoxin''' (PUT) and '''terpredoxin''' (TER) are involved in the same reaction in bacteria and contain a 2Fe-2S group<ref>PMID:10220356</ref>.
==D14C variant of ''Pyrococcus furiosus'' ferredoxin<ref>DOI 10.1007/s00775-011-0778-7</ref>==
==D14C variant of ''Pyrococcus furiosus'' ferredoxin<ref>DOI 10.1007/s00775-011-0778-7</ref>==
Latest revision as of 05:50, 23 June 2024
Ferredoxin with Fe4S4 cluster complex with cobalt hexamine (PDB code 2z8q)
Ferredoxin (Fd) is found in chloroplasts which mediates electron transfer and contains an iron-sulfur cluster. It is involved in the photosynthesis process where its iron atoms accept or discharge electrons when they are being oxidized or reduced. The iron-sulfur cluster can contain 2Fe-2S and is termed plant-like or 3Fe-4S or 4Fe-4S clusters.
Adrenodoxin (ADR) is a ferredoxin containing a 2Fe-2S group involved in electron transfer from NADPH+ to a cytochrome P-450 in the adrenal gland[1]..
Putidaredoxin (PUT) and terpredoxin (TER) are involved in the same reaction in bacteria and contain a 2Fe-2S group[2].
pH dependent equilibrium of D14C [3Fe-4S] P. furiosus ferredoxin between protonated and deprotonated monomers and formation of a disulfide bonded dimer from deprotonated monomers. Fd is short for ferredoxin.
ISC-like [2Fe-2S] ferredoxin (FdxB) dimer from Pseudomonas putida JCM 20004[4]
Biological iron-sulfur (Fe-S) clusters are functionally versatile, modular prosthetic groups. The electronic structure and the site of iron reduction of these protein-bound cofactors account for the electron transfer function and mechanism. In the present work we have solved the structure of the ISC-like [2Fe-2S] ferredoxin called FdxB from the non-pathogenic gammaproteobacterium Pseudomonas putida JCM 20004 (formerly Pseudomonas ovalis IAM 1002) (3ah7). This FdxB protein contains an adrenodoxin (Adx) like, redox-active [2Fe-2S] cluster, which plays an essential role in the de novo iron-sulfur cluster assembly (ISC) system. It is encoded by the fdxB gene as a constituent of the cognate iscR-iscS1-iscU-iscA-hscB-hscA-fdxB gene cluster for the ISC system (DDBJ-EMBL-GenBank code AB109467). In P. putida the ISC pathway is apparently the sole system for in vivo Fe-S cluster assembly whereas the SUF pathway is missing in the bacterial genome (unlike in Escherichia coli).
With the molecular structural frame determined from the FdxB structure, our electron-nuclear double resonance (ENDOR) analysis has allowed to determine the average gmax direction of the reduced FdxB, which is skewed, pointing roughly towards Cys50 Cα and forming an angle of about 27.3 (±4) degrees with the normal of the [2Fe-2S] plane, while the gint- and gmin-directions are distributed in a plane tilted toward the cluster plane (see image below).
Skewed orientations of the gmax component (red) with respect to the molecular frame of the [2Fe–2S] cluster of FdxB.
The site of reduced iron in the reduced FdxB is the outermost Fe1 site with the low negative spin density, while the innermost Fe2 site with the high positive spin population is the non-reducible iron retaining the Fe3+-valence of a reduced cluster. From a structural point of view, the larger number of polarized (or polarizable) bonds (NH, OH) and the extended hydrogen bonding network around Fe1 in FdxB may be the crucial factor favoring the accommodation of the reducing electron at the outermost Fe1 site. These results suggest a significant distortion of the electronic structure of the reduced [2Fe-2S] cluster under the influence of the protein environment around each iron site in general.
Heterometallic [AgFe3S4] ferredoxin variants – synthesis, characterization and the first crystal structure of an engineered heterometallic iron-sulfur protein [5]
The crystal structure of the Pyrococcus furiosus (Pf) ferredoxin (Fd) D14C variant with the novel [AgFe3S4] heterometallic cluster was determined to 1.95 Å resolution (PBD entry 4dhv), being the first reported structure of an engineered heterometallic iron-sulfur protein.
The crystal structure of the monomeric form shows that the silver (I) ion is part of the cluster (clearly seen on the electron density map), as predicted from previous spectroscopic and electrochemical studies. The heterometal is coordinated to the three inorganic sulfides of the cluster and to the thiolate group of residue 14 (residues Cys11, Cys17 and Cys56 are coordinated with Fe ions of heterometal), replacing the aboriginal Fe ion in the all-iron coordinated [Fe4S4] D14C variant (2z8q, heterometallic [AgFe3S4] protein is in cyan and homometallic [Fe4S4] is in green) and completing the incomplete cuboidal cluster present in the [Fe3S4] WT Pf Fd (PDB: 1sj1) and its D14C (PDB: 3pni) variant (for more details see also "Crystal structures of the all cysteinyl coordinated D14C variant of Pyrococcus furiosus ferredoxin: (4Fe-4S) <-> (3Fe-4S) cluster conversion"). Structure alignment of backbone atoms from the heterometallic [AgFe3S4] protein and the homometallic [Fe4S4] D14C variant (2z8q) shows very minor differences, i.e. the root mean square deviation (RMSD) is 0.4 – 0.7 Å, observed due to the alternate conformation of the main chain atoms, flexible loops and small changes at the N- and C-termini (heterometallic [AgFe3S4] protein is in cyan and homometallic [Fe4S4] is in green). More significant difference can be seen in the superimposed Fe–S clusters (atom colors corresponding to yellow: S, orange: Fe, gray: Ag) from these two variants, which is due to the presence of the second row transition metal ion (Ag) coordinated to the four S-ligands, i.e. the presence of Ag results in a distorted geometry of the cluster compared to the all-iron arrangement, because to the longer Ag – S bond lengths compared to Fe – S bonds. However, the S – Ag – S bond angles are still close to the expected 90° for a primitive cubic system.
↑Ewen KM, Ringle M, Bernhardt R. Adrenodoxin--a versatile ferredoxin. IUBMB Life. 2012 Jun;64(6):506-12. PMID:22556163 doi:10.1002/iub.1029
↑Mo H, Pochapsky SS, Pochapsky TC. A model for the solution structure of oxidized terpredoxin, a Fe2S2 ferredoxin from Pseudomonas. Biochemistry. 1999 Apr 27;38(17):5666-75. PMID:10220356 doi:https://dx.doi.org/10.1021/bi983063r
↑Lovgreen MN, Martic M, Windahl MS, Christensen HE, Harris P. Crystal structures of the all-cysteinyl-coordinated D14C variant of Pyrococcus furiosus ferredoxin: [4Fe-4S] <--> [3Fe-4S] cluster conversion. J Biol Inorg Chem. 2011 Apr 12. PMID:21484348 doi:10.1007/s00775-011-0778-7
↑Iwasaki T, Kappl R, Bracic G, Shimizu N, Ohmori D, Kumasaka T. ISC-like [2Fe-2S] ferredoxin (FdxB) dimer from Pseudomonas putida JCM 20004: structural and electron-nuclear double resonance characterization. J Biol Inorg Chem. 2011 Jun 7. PMID:21647778 doi:10.1007/s00775-011-0793-8
↑Martic M, Jakab-Simon IN, Haahr LT, Hagen WR, Christensen HE. Heterometallic [AgFe(3)S (4)] ferredoxin variants: synthesis, characterization, and the first crystal structure of an engineered heterometallic iron-sulfur protein. J Biol Inorg Chem. 2013 Feb;18(2):261-76. doi: 10.1007/s00775-012-0971-3. Epub, 2013 Jan 8. PMID:23296387 doi:10.1007/s00775-012-0971-3
References
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