Abstract Background: In Piedmontese cattle the double-muscled phenotype is an inherited condition associated to a point mutation in the myostatin (MSTN) gene. The Piedmontese MSTN missense mutation G938A is translated to C313Y myostatin protein. This mutation alters MSTN function as a negative regulator of muscle growth, thereby inducing muscle hypertrophy. MiRNAs could play a role in skeletal muscle hypertrophy modulation by down-regulating gene expression. Results: After identifying a 30-UTR consensus sequence of several negative and positive modulator genes involved in the skeletal muscle hypertrophy pathway, such as IGF1, IGF1R, PPP3CA, NFATc1, MEF2C, GSK3b, TEAD1 and MSTN, we screened miRNAs matching to it. This analysis led to the ide...
Porcine skeletal muscle fibres are classified based on their different physiological and biochemical...
Myostatin, a member of the transforming growth factor-beta superfamily, is a negative regulator of s...
Abstract\ud \ud Background\ud The amount of intramuscu...
A loss-of-function mutation of the myostatin gene has a very high prevalence in the Piedmontese catt...
Piedmontese cattle is known for double-muscle phenotype. MicroRNAs (miRNAs) play important role as r...
Texel sheep are renowned for their exceptional meatiness. To identify the genes underlying this econ...
Background: Myostatin, a muscle-specific member of the Transforming Growth Factor beta family, negat...
Abstract Background Loss of functional Myostatin results in a dramatic increase in skeletal muscle m...
<div><p>The posttranscriptional gene regulation mediated by microRNAs (miRNAs) plays an important ro...
The posttranscriptional gene regulation mediated by microRNAs (miRNAs) plays an important role in va...
Loss of functional Myostatin results in a dramatic increase in skeletal muscle mass. It is unknown w...
<div><p>Porcine skeletal muscle fibres are classified based on their different physiological and bio...
MicroRNAs (miRNAs) encoded by the myosin heavy chain (MHC) genes are muscle-specific miRNAs (myomiRs...
We aimed to understand the roles of miRNAs in the muscle tissue maturation and those of circulating ...
In this study, we examined the role of mRNAs and miRNAs in variations in intramuscular fat content i...
Porcine skeletal muscle fibres are classified based on their different physiological and biochemical...
Myostatin, a member of the transforming growth factor-beta superfamily, is a negative regulator of s...
Abstract\ud \ud Background\ud The amount of intramuscu...
A loss-of-function mutation of the myostatin gene has a very high prevalence in the Piedmontese catt...
Piedmontese cattle is known for double-muscle phenotype. MicroRNAs (miRNAs) play important role as r...
Texel sheep are renowned for their exceptional meatiness. To identify the genes underlying this econ...
Background: Myostatin, a muscle-specific member of the Transforming Growth Factor beta family, negat...
Abstract Background Loss of functional Myostatin results in a dramatic increase in skeletal muscle m...
<div><p>The posttranscriptional gene regulation mediated by microRNAs (miRNAs) plays an important ro...
The posttranscriptional gene regulation mediated by microRNAs (miRNAs) plays an important role in va...
Loss of functional Myostatin results in a dramatic increase in skeletal muscle mass. It is unknown w...
<div><p>Porcine skeletal muscle fibres are classified based on their different physiological and bio...
MicroRNAs (miRNAs) encoded by the myosin heavy chain (MHC) genes are muscle-specific miRNAs (myomiRs...
We aimed to understand the roles of miRNAs in the muscle tissue maturation and those of circulating ...
In this study, we examined the role of mRNAs and miRNAs in variations in intramuscular fat content i...
Porcine skeletal muscle fibres are classified based on their different physiological and biochemical...
Myostatin, a member of the transforming growth factor-beta superfamily, is a negative regulator of s...
Abstract\ud \ud Background\ud The amount of intramuscu...