Metabolic Modeling Tutorial
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Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
BioCyc websites down
12/28 - 12/31
for maintenance.
Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
BioCyc websites down
12/28 - 12/31
for maintenance.
Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
BioCyc websites down
12/28 - 12/31
for maintenance.
Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
BioCyc websites down
12/28 - 12/31
for maintenance.
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MetaCyc Protein Class: a flavodoxin

Superclasses: a flavoprotein

Summary:
Flavodoxin (Fld) is a soluble electron shuttle flavoprotein (it binds a flavin mononucleotide) that is isofunctional with ferredoxin (Fd). In photosynthetic organisms flavodoxin is reduced by the terminal electron acceptors of photosystem I.

Fd and Fld are involved in multiple redox reactions. They can both sustain cyclic as well as linear electron flow. The cyclic electron flow creates a proton gradient across the photosynthetic membrane and allows ATP synthesis independent of photosystem II activity. Linear electron flow, on the other hand, utilizes electrons from the reduced Fd and Fld for NADP+ reduction in a reaction catalyzed by ferredoxin-NADP oxidoreductase (FNR). The source of electrons during linear electron flow is the dissociation of water by photosystem II.

Fd serves also as an electron donor to a number of soluble enzymes involved in nitrogen metabolism, sulfur metabolism and the regulation of carbon metabolism. Fld can substitute Fd under conditions of iron deprivation in most cyanobacteria and some algae and may be efficient in reducing most or all of these soluble enzymes [Setif01].

Child Classes: a flavodoxin semiquinone (0) , a reduced flavodoxin (2) , an oxidized flavodoxin (2)

Gene-Reaction Schematic: ?

Credits:
Revised 22-Aug-2008 by Caspi R , SRI International


References

Setif01: Setif P (2001). "Ferredoxin and flavodoxin reduction by photosystem I." Biochim Biophys Acta 1507(1-3);161-79. PMID: 11687213


Report Errors or Provide Feedback
Please cite the following article in publications resulting from the use of MetaCyc: Caspi et al, Nucleic Acids Research 42:D459-D471 2014
Page generated by SRI International Pathway Tools version 18.5 on Mon Dec 22, 2014, biocyc11.