Sandbox Reserved 1092

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= Structure and synthesis <ref name="Structure and synthesis"> Université de Montpellier. Physiologie expérimentale du coeur et des muscles : la myostatine/partenaires de la myostatine. [https://u1046.edu.umontpellier.fr/163-2/abrege-des-proteines-musculaires/myostatine/]</ref> =
= Structure and synthesis <ref name="Structure and synthesis"> Université de Montpellier. Physiologie expérimentale du coeur et des muscles : la myostatine/partenaires de la myostatine. [https://u1046.edu.umontpellier.fr/163-2/abrege-des-proteines-musculaires/myostatine/]</ref> =
== Primary and secondary structures ==
== Primary and secondary structures ==
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Myostatin is a '''42,7 kDa''' protein composed of only 108 residues in its mature form. It contains 7 <scene name='82/829345/Cys/5'>cystein</scene> residues in its C-terminal domain, all of which are involved in '''disulfide bridges'''. The secondary structure of myostatin is composed of two strands, both made of<scene name='82/829345/Sheets/1'>short antiparallel structures</scene>. The structure is also made of '''3 alpha helices''' :
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Myostatin is a '''42,7 kDa''' protein composed of only 108 residues in its mature form. It contains 7 <scene name='82/829345/Cys/5'>cystein</scene> residues in its C-terminal domain, all of which are involved in '''disulfide bridges'''. The secondary structure of myostatin is composed of two strands, both made of short <scene name='82/829345/Sheets/1'> antiparallel structures</scene>. The structure is also made of 3 <scene name='82/829345/Helices/2'>α helices </scene> :
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- '''Helix alpha-1''' : containing between 4 and 7 residues (non-visible on the structure)
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- '''Helix α-1''' : containing between 4 and 7 residues (non-visible on the structure)
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- '''Helix alpha-2''' : containing between 24 and 28 residues
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- '''Helix α-2''' : containing between 24 and 28 residues
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- '''Helix alpha-3''' : containing between 58 and 68 residues
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- '''Helix α-3''' : containing between 58 and 68 residues
The folding of these structures gives myostatin a slightly bent, hand-like shape, with 2 fingers formed by the strands described above. The palm of the hand is formed by the helix alpha-3. The N- and C-terminal ends are situated very close to the palm and the last 10 residues on the N-terminal side form the thumb of the hand.
The folding of these structures gives myostatin a slightly bent, hand-like shape, with 2 fingers formed by the strands described above. The palm of the hand is formed by the helix alpha-3. The N- and C-terminal ends are situated very close to the palm and the last 10 residues on the N-terminal side form the thumb of the hand.

Revision as of 17:46, 14 January 2020

This Sandbox is Reserved from 25/11/2019, through 30/9/2020 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1091 through Sandbox Reserved 1115.
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