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  2. Iron–sulfur cluster biosynthesis - Wikipedia

    en.wikipedia.org/wiki/Ironsulfur_cluster...

    Finally these Fe-S cluster is transferred to a target protein, which then become functional. [1] The formation of iron–sulfur clusters are produced by one of four pathways: [2] Nitrogen fixation (NIF) system, which is also found in bacteria that are not nitrogen-fixing. [3] Iron–sulfur cluster (ISC) system, in bacterial and mitochondria

  3. Iron–sulfur cluster - Wikipedia

    en.wikipedia.org/wiki/Ironsulfur_cluster

    Iron–sulfur clusters are molecular ensembles of iron and sulfide. They are most often discussed in the context of the biological role for iron–sulfur proteins , which are pervasive. [ 2 ] Many Fe–S clusters are known in the area of organometallic chemistry and as precursors to synthetic analogues of the biological clusters.

  4. Iron–sulfur protein - Wikipedia

    en.wikipedia.org/wiki/Ironsulfur_protein

    Iron–sulfur proteins are proteins characterized by the presence of iron–sulfur clusters containing sulfide-linked di-, tri-, and tetrairon centers in variable oxidation states. Iron–sulfur clusters are found in a variety of metalloproteins , such as the ferredoxins , as well as NADH dehydrogenase , hydrogenases , coenzyme Q – cytochrome ...

  5. Ferredoxin - Wikipedia

    en.wikipedia.org/wiki/Ferredoxin

    Ferredoxins (from Latin ferrum: iron + redox, often abbreviated "fd") are iron–sulfur proteins that mediate electron transfer in a range of metabolic reactions. The term "ferredoxin" was coined by D.C. Wharton of the DuPont Co. and applied to the "iron protein" first purified in 1962 by Mortenson, Valentine, and Carnahan from the anaerobic bacterium Clostridium pasteurianum.

  6. Bacterial microcompartment - Wikipedia

    en.wikipedia.org/wiki/Bacterial_microcompartment

    The presence of iron-sulfur clusters in some shell proteins, presumably in the central pore, has led to the suggestion that they can serve as a conduit through which electrons can be shuttled across the shell. [36] [39] [40]

  7. Cytochrome b6f complex - Wikipedia

    en.wikipedia.org/wiki/Cytochrome_b6f_complex

    The cytochrome b 6 f complex is a dimer, with each monomer composed of eight subunits. [3] These consist of four large subunits: a 32 kDa cytochrome f with a c-type cytochrome, a 25 kDa cytochrome b 6 with a low- and high-potential heme group, a 19 kDa Rieske iron-sulfur protein containing a [2Fe-2S] cluster, and a 17 kDa subunit IV; along with four small subunits (3-4 kDa): PetG, PetL, PetM ...

  8. High potential iron–sulfur protein - Wikipedia

    en.wikipedia.org/wiki/High_potential_iron...

    They participate in electron-transfer sequences. The core structure for the [Fe 4 S 4] cluster is a cube with alternating Fe and S vertices. These clusters exist in two oxidation states with a small structural change. Two families of [Fe 4 S 4] clusters are known: the ferredoxin (Fd) family and the high-potential iron–suflur protein (HiPIP ...

  9. Photosystem I - Wikipedia

    en.wikipedia.org/wiki/Photosystem_I

    Next, the electron-accepting reaction centers include iron–sulfur proteins. [23] Last, redox centres in complexes of both photosystems are constructed upon a protein subunit dimer. [ 23 ] The photosystem of green sulfur bacteria even contains all of the same cofactors of the electron transport chain in PSI. [ 23 ]

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