Title : Effector role reversal during evolution: the case of frataxin in Fe-S cluster biosynthesis.

Pub. Date : 2012 Mar 27

PMID : 22352884






8 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 Effector role reversal during evolution: the case of frataxin in Fe-S cluster biosynthesis. Iron frataxin Homo sapiens
2 Human FXN is a component of the NFS1-ISD11-ISCU2-FXN (SDUF) core Fe-S assembly complex and activates the cysteine desulfurase and Fe-S cluster biosynthesis reactions. Iron frataxin Homo sapiens
3 Human FXN is a component of the NFS1-ISD11-ISCU2-FXN (SDUF) core Fe-S assembly complex and activates the cysteine desulfurase and Fe-S cluster biosynthesis reactions. Iron frataxin Homo sapiens
4 Human FXN is a component of the NFS1-ISD11-ISCU2-FXN (SDUF) core Fe-S assembly complex and activates the cysteine desulfurase and Fe-S cluster biosynthesis reactions. Iron frataxin Homo sapiens
5 Human FXN is a component of the NFS1-ISD11-ISCU2-FXN (SDUF) core Fe-S assembly complex and activates the cysteine desulfurase and Fe-S cluster biosynthesis reactions. Iron frataxin Homo sapiens
6 In contrast, the Escherichia coli FXN homologue CyaY inhibits Fe-S cluster biosynthesis. Iron frataxin Homo sapiens
7 These data are consistent with a model in which the frataxin-less Fe-S assembly complex exists as a mixture of functional and nonfunctional states, which are stabilized by binding of frataxin homologues. Iron frataxin Homo sapiens
8 These data are consistent with a model in which the frataxin-less Fe-S assembly complex exists as a mixture of functional and nonfunctional states, which are stabilized by binding of frataxin homologues. Iron frataxin Homo sapiens