Sandbox Reserved 1092

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Current revision (15:34, 16 January 2020) (edit) (undo)
 
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= Function <ref name="patho"/>=
= Function <ref name="patho"/>=
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Myostatin is a strong '''endogenous, negative regulator of muscle growth''' determining both '''muscle fiber number and size.''' The number of fibers is set during the development of the animal while their size adapts during the entire lifetime, depending on '''activity, nutrition and aging.''' Myostatin acts on this by providing regulation on the growth of muscles. It has been found first in mice which, having their gene encoding for myostatin '''knocked-out''', developed overgrowth of muscles, due to '''hyperplasia and hypertrophy''', which effects are persistent throughout the life of animals.
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Myostatin is a strong '''endogenous, negative regulator of muscle growth''' determining both '''muscle fiber number and size.''' The number of fibers is defined during the development of the animal while their size changes while they live, depending on '''activity, nutrition and aging.''' Myostatin acts on this by providing regulation on the growth of muscles. It has been found first in mice which, having their gene encoding for myostatin '''knocked-out''', developed overgrowth of muscles, due to '''hyperplasia and hypertrophy''', which effects are persistent throughout the life of animals.
Therefore, myostatin appears to act at the level of fiber number during '''embryogenesis''' and its growth in '''adult life.'''
Therefore, myostatin appears to act at the level of fiber number during '''embryogenesis''' and its growth in '''adult life.'''
==Myostatin processing and signal transduction <ref name="patho"/>==
==Myostatin processing and signal transduction <ref name="patho"/>==
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They are activated and proliferate then to respond to tissue damage.
They are activated and proliferate then to respond to tissue damage.
However a small part doesn’t differentiate and return to quiescence to maintain the pool of satellite cells.
However a small part doesn’t differentiate and return to quiescence to maintain the pool of satellite cells.
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This is where myostatin as a role : it represents a key molecule signalling the quiescence of satellite cells.
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This is where myostatin steps in : it represents a key molecule signalling the quiescence of satellite cells.
In myostatin mutant mouse the number of satellite cells increases a lot compared to non mutated mice.
In myostatin mutant mouse the number of satellite cells increases a lot compared to non mutated mice.
Basically, myostatin maintains satellite cells in a quiescent state during regeneration or muscle growth.
Basically, myostatin maintains satellite cells in a quiescent state during regeneration or muscle growth.

Current revision

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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