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 short antiparallel structures. This structure is made of 3 alpha helices :
+
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 antiparallel structures'''. The structure is also made of '''3 alpha helices''' :
- '''Helix alpha-1''' : containing between 4 and 7 residues
- '''Helix alpha-1''' : containing between 4 and 7 residues
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=== Maturation process ===
=== Maturation process ===
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[[Image:Example.jpg]]
The pre-Myostatin dimer is first cleaved by a protease from the Furin family, to the 266 and 267 amino-acids level, namely right before the beginning of the similar C-terminal end of each pro-peptide. This leads to the formation of a latent pre-myostatin complex, made of both disulfide-linked C-terminal ends with both N-terminal propeptide next to it.
The pre-Myostatin dimer is first cleaved by a protease from the Furin family, to the 266 and 267 amino-acids level, namely right before the beginning of the similar C-terminal end of each pro-peptide. This leads to the formation of a latent pre-myostatin complex, made of both disulfide-linked C-terminal ends with both N-terminal propeptide next to it.
Then comes a protease specific of growth factors, which will provoke the degradation of the N-terminal ends, resulting in the formation of the mature myostatin homodimer.
Then comes a protease specific of growth factors, which will provoke the degradation of the N-terminal ends, resulting in the formation of the mature myostatin homodimer.

Revision as of 17:01, 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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