User:Jacob Holt/Sandbox 1

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The mechanism used by the SCD1 enzyme is different than most desaturase enzymes because it does not use an oxo-bridge. This was confirmed based on the distance between the metal ions (~6.4Å) and the lack of electron density that should be present with two oxygens<ref name="Shen" />. There have been multiple proposed mechanisms, but the mechanism shown below is a shortened version of the mechanism that is the most accurate<ref name="Yu" />.
The mechanism used by the SCD1 enzyme is different than most desaturase enzymes because it does not use an oxo-bridge. This was confirmed based on the distance between the metal ions (~6.4Å) and the lack of electron density that should be present with two oxygens<ref name="Shen" />. There have been multiple proposed mechanisms, but the mechanism shown below is a shortened version of the mechanism that is the most accurate<ref name="Yu" />.
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''Step 1'': Addition of O2 and H2O which react with the Fe2+ ions to create oxygen radicals on the iron ions (Figure 4).
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'''Step 1''': Addition of O2 and H2O which react with the Fe2+ ions to create oxygen radicals on the iron ions (Figure 4).
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''Step 2'': Electron/proton pair is brought in via the electron transport chain; this increases the oxidation of both iron ions, gets rid of the radicals, and creates an active Fe-oxyl molecule (Figure).5 Fe-oxyl molecule is reactive enough, due to the change in the oxidation state, to pull off the first hydrogen on carbon 9 (figure 4).
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'''Step 2''': Electron/proton pair is brought in via the electron transport chain; this increases the oxidation of both iron ions, gets rid of the radicals, and creates an active Fe-oxyl molecule (Figure).5 Fe-oxyl molecule is reactive enough, due to the change in the oxidation state, to pull off the first hydrogen on carbon 9 (figure 4).
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''Step 3'': An unstable radical intermediate of the 18-carbon acyl-CoA ligand is formed which reacts with the other Fe-O molecule, in the +3 state, to pull of the second hydrogen and form the final product (figure 4)<ref name="Yu" />.
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'''Step 3''': An unstable radical intermediate of the 18-carbon acyl-CoA ligand is formed which reacts with the other Fe-O molecule, in the +3 state, to pull of the second hydrogen and form the final product (figure 4)<ref name="Yu" />.
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''Step 4'': Another electron/proton pair is brought in to create three H2O molecules and to take the Fe ions back down to their original oxidation state of +2 (Figure 4)<ref name="Yu" />.
+
'''Step 4''': Another electron/proton pair is brought in to create three H2O molecules and to take the Fe ions back down to their original oxidation state of +2 (Figure 4)<ref name="Yu" />.

Revision as of 02:28, 27 April 2021

Desaturation of Fatty Acids using Stearoyl-CoA Desaturase-1 Enzyme

SCD1 Protein 4ymk

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Student Contributions

Carson Maris, Jess Kersey, Jacob Holt

Proteopedia Page Contributors and Editors (what is this?)

Jacob Holt

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