Frataxin

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'''The Role of the Channel'''
'''The Role of the Channel'''
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The channel of the trimer is formed at its 3-fold axis, in a central position. Its has importance in catalysing the oxidation of iron, but also acts to further stabilise the trimeric form.
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The channel of the trimer is formed at its 3-fold axis, in a central position. It is the strure responsible for stabilizing the atom of iron for delivery, but also acts to further stabilise the trimeric form.
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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>.
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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>, with form a helic structure maintened, for instance, through hydrogen bonds between the pairs <scene name='78/786054/152-147_hydrogen_bond/1'>Leu 152-Gly 147</scene>,<scene name='78/786054/143-129__hydrogen_bond/1'>Asp 143-Gln 129</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. The hydrophobic lid formed by Leu 145, Val 150 and Leu 152 fully encloses the iron atom within the channel (iron atom not shown).
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).

Revision as of 04:47, 18 June 2018

Frataxin

Caption for this structure

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References

Proteopedia Page Contributors and Editors (what is this?)

João Victor Paccini Coutinho, Michal Harel, Rebeca B. Candia

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