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1 24th January 03:37
ironjustice
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Posts: 1
Default Reactive pool of iron is critical / superoxide dismutase (stress)



The effects of mitochondrial iron homeostasis on cofactor specificity
of superoxide dismutase
Yang M, Cobine PA, Molik S, Naranuntarat A, Lill R, Winge DR, Culotta
VC
EMBO J. 2006 Apr 6;

Many metalloproteins have the capacity to bind diverse metals, but in
living cells connect only with their cognate metal cofactor. In
eukaryotes, this metal specificity can be achieved through
metal-specific metallochaperone proteins. Herein, we describe a
mechanism whereby Saccharomyces cerevisiae manganese superoxide
dismutase (SOD2) preferentially binds manganese over iron based on the
differential bioavailability of these ions within mitochondria. The
bulk of mitochondrial iron is normally unavailable to SOD2, but when
mitochondrial iron homeostasis is disrupted, for example, by mutations
in S. cerevisiae mtm1, ssq1 and grx5, iron ac***ulates in a reactive
form that potently competes with manganese for binding to SOD2,
inactivating the enzyme. Studies in mtm1 mutants indicate that iron
inactivation of SOD2 involves the Mrs3p/Mrs4p mitochondrial carriers
and iron-binding frataxin (Yfh1p). A small pool of SOD2-reactive iron
also exists under normal iron homeostasis conditions and binds SOD2
when mitochondrial manganese is low. The ability to control this
reactive pool of iron is critical to maintaining SOD2 activity and has
important potential implications for oxidative stress in disorders of
iron overload.

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2 8th May 03:09
ironjustice
External User
 
Posts: 1
Default Reactive pool of iron is critical / superoxide dismutase (stress)



The effects of mitochondrial iron homeostasis on cofactor specificity
of superoxide dismutase
Yang M, Cobine PA, Molik S, Naranuntarat A, Lill R, Winge DR, Culotta
VC
EMBO J. 2006 Apr 6;

Many metalloproteins have the capacity to bind diverse metals, but in
living cells connect only with their cognate metal cofactor. In
eukaryotes, this metal specificity can be achieved through
metal-specific metallochaperone proteins. Herein, we describe a
mechanism whereby Saccharomyces cerevisiae manganese superoxide
dismutase (SOD2) preferentially binds manganese over iron based on the
differential bioavailability of these ions within mitochondria. The
bulk of mitochondrial iron is normally unavailable to SOD2, but when
mitochondrial iron homeostasis is disrupted, for example, by mutations
in S. cerevisiae mtm1, ssq1 and grx5, iron ac***ulates in a reactive
form that potently competes with manganese for binding to SOD2,
inactivating the enzyme. Studies in mtm1 mutants indicate that iron
inactivation of SOD2 involves the Mrs3p/Mrs4p mitochondrial carriers
and iron-binding frataxin (Yfh1p). A small pool of SOD2-reactive iron
also exists under normal iron homeostasis conditions and binds SOD2
when mitochondrial manganese is low. The ability to control this
reactive pool of iron is critical to maintaining SOD2 activity and has
important potential implications for oxidative stress in disorders of
iron overload.

Who loves ya.
Tom


Jesus Was A Vegetarian!
http://jesuswasavegetarian.7h.com


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http://pages.ivillage.com/ironjustice/manisaherbivore


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