User:Rebeca B. Candia/Sandbox 1
From Proteopedia
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It consists of a polymeric molecule that, altought capable of forming larger complexes (as the 24 subunit oligomer detected by electron microscopy), exerts its activity by association of three subunits, enough to form a central channel where the ferroxidation takes place. | It consists of a polymeric molecule that, altought capable of forming larger complexes (as the 24 subunit oligomer detected by electron microscopy), exerts its activity by association of three subunits, enough to form a central channel where the ferroxidation takes place. | ||
| - | In the following paragraphs, we describe the general features of its structure in the trimeric form as obtaneid by X-ray | + | In the following paragraphs, we describe the general features of its structure in the trimeric form as obtaneid by X-ray cristallography at 3Å resolution. The protein used was obtained from the Y37A yeast, which has a 40% sequence identity to the human frataxin. |
In the box at the right, it is possible to see its <scene name='78/788815/Spacefill_model/1'>general structure</scene> in a space-fill model, in which <font color='violet'><b>violet</b></font>, <font color='orangered'><b>orange</b></font> and <span style="color:aquamarine;background-color:darkgrey;font-weight:bold;">light-green</span> represent, each, a different monomer from the entire molecule. | In the box at the right, it is possible to see its <scene name='78/788815/Spacefill_model/1'>general structure</scene> in a space-fill model, in which <font color='violet'><b>violet</b></font>, <font color='orangered'><b>orange</b></font> and <span style="color:aquamarine;background-color:darkgrey;font-weight:bold;">light-green</span> represent, each, a different monomer from the entire molecule. | ||
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Stabilising the entrance, there are some interactions between the <scene name='78/786054/151-155_144-149/1'>loops around the central channel</scene>, for instance, the hydrogen bonds between the pairs <scene name='78/786054/143-129__hydrogen_bond/1'>Asp 143-Gln 129</scene>, <scene name='78/786054/152-147_hydrogen_bond/1'>Leu 152-Gly 147</scene> and <scene name='78/786054/146-154_hydrogen_bond/1'>Asn 146-Gln 154</scene>. | Stabilising the entrance, there are some interactions between the <scene name='78/786054/151-155_144-149/1'>loops around the central channel</scene>, for instance, the hydrogen bonds between the pairs <scene name='78/786054/143-129__hydrogen_bond/1'>Asp 143-Gln 129</scene>, <scene name='78/786054/152-147_hydrogen_bond/1'>Leu 152-Gly 147</scene> and <scene name='78/786054/146-154_hydrogen_bond/1'>Asn 146-Gln 154</scene>. | ||
| - | In the structure of the channel, the side chains of the hydrophobic aminoacids Leu 145, Val 150 and Leu 152 are exposed to the solvent, creating a <scene name='78/786054/Hydrophobic_lid/3'>hydrophobic edge</scene> around the channel. This hydrophobic entrance may be useful in guiding the Fe 2+ ions into the channel core, as well as providing a hydrophobic contact surface by which other proteins can interact, hiding their hydrophobic residues from the solvent-rich environment. | + | In the structure of the channel, the side chains of the hydrophobic aminoacids Leu 145, Val 150 and Leu 152 are exposed to the solvent, creating a <scene name='78/786054/Hydrophobic_lid/3'>hydrophobic edge</scene> around the channel. This hydrophobic entrance may be useful in guiding the Fe 2+ ions into the channel core, as well as providing a hydrophobic contact surface by which other proteins can interact, hiding their hydrophobic residues from the solvent-rich environment. The hydrophobic lid formed by Leu 145, Val 150 and Leu 152 fully encloses the iron atom within the channel (iron atom not shown). |
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| + | Within the channel, the metal ion binds at around 4 Å from the side chains of the three Asp 143 residues. Laboraroty data from X-ray cristallography suggests the Fe 2+ ion being associated with solvent molecules. | ||
Revision as of 21:52, 17 June 2018
Frataxin
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