Methionine synthase: Difference between revisions
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[[Image:cob_1_alamin.jpeg|500px]] | [[Image:cob_1_alamin.jpeg|500px]] | ||
The vitamin B12 Cobalamin binding domain has a special characteristic in that, it is most naturally found in a protective conformation to prevent unwanted chemistry from | The vitamin B12 Cobalamin binding domain has a special characteristic in that, it is most naturally found in a protective conformation to prevent unwanted chemistry from occurring (PDB: 1BMT). This is referred to as a 'capping' mechanism. | ||
== Cap domain == | == Cap domain == | ||
When B12 is not engaged with one of the other three substrate binding domains, it is protected by a <scene name='90/907471/Cap/1'>cap</scene>. | When B12 is not engaged with one of the other three substrate binding domains, it is protected by a <scene name='90/907471/Cap/1'>cap</scene>. | ||
In the Cob(I)alamin binding domain, the imidazole side chain containing His 759 replaces the dimethylbenzimidazole (DMB) ligand. His 759 bonds to Asp 757 and Ser 810 via hydrogen bonds to create a ligand trifecta that increases the efficiency of the methyl transfer during the catalytic cycle. With His on, the cap is off of Cobalamin to allow for it to hold onto the methyl from MTHF. With His off, the cap is on thus no reaction.<ref name="Bandarian et al"/>. | |||
== Oxidation States of Cobalamin == | == Oxidation States of Cobalamin == | ||
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Cobalamin exists in three different oxidation states during the MS cycle. | Cobalamin exists in three different oxidation states during the MS cycle. | ||
Cob(I)alamin: Cobalt in the +1 oxidation state is nicknamed the "super nucleophile" as its high energy is required to carry out the complex SN2 reaction of breaking the bond between THF and the methyl group, in the catalytic cycle. | '''Cob(I)alamin''': Cobalt in the +1 oxidation state is nicknamed the "super nucleophile" as its high energy is required to carry out the complex SN2 reaction of breaking the bond between THF and the methyl group, in the catalytic cycle. | ||
Co(III)alamin: Cobalt in +3 oxidation state occurs when His 759 replaces the dimethylbenzimidazole (DMB) ligand to allow for the methyl to be accepted by Cob(I)alamin, forming Me-Cob(III)alamin. | '''Co(III)alamin''': Cobalt in +3 oxidation state occurs when His 759 replaces the dimethylbenzimidazole (DMB) ligand to allow for the methyl to be accepted by Cob(I)alamin, forming Me-Cob(III)alamin. | ||
Cob(II)alamin: | '''Cob(II)alamin''': Cob(I)alamin is highlight reactive towards oxygen so occasionally under aerobic conditions, Cob(I)alamin will occasionally undergo oxidation leading to an inactive Cob(II)alamin enzyme in the +2 oxidation state. This is regulated by reductive methylation by using Flavodoxin as an electron donor to reactivate Cob(I)alamin, and subsequently regenerates Me-Cob(III)alamin with a methyl being donated from SAM. | ||
</StructureSection> | </StructureSection> | ||