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SRSF9 Polyclonal Antibody, 50ul Plasmid Preparation Alternative splicing results in multiple

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SRSF9 Polyclonal Antibody, 50ul Plasmid Preparation Alternative splicing results in multipleThe protein encoded by this gene is a member of the serine arginine (SR) rich family of pre mRNA splicing factors, which constitute part of the spliceosome. Each of these factors contains an RNA recognition motif (RRM) for binding RNA and an RS domain for binding other proteins. The RS domain is rich in serine and arginine residues and facilitates interaction between different SR splicing factors. In addition to being critical for mRNA splicing, the

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Description

Alternative splicing results in multiple transcript variants but their biological validity has not been determined

The encoded preproprotein present in plasma as a non-covalent complex with high molecular weight kininogen undergoes proteolytic processing mediated by activated coagulation factor XII to generate a disulfide-linked

FXYD4| originally named CHIF for channel-inducing factor| has been shown to modulate the properties of the Na|K-ATPase| as has FXYD2| also known as the gamma subunit of the Na|K-ATPase| and FXYD7

To prevent overloading of intracellular stores

This gene is located at the telomeric end of the cystatin locus and encodes a type 2 cystatin-like protein

SRSF9 Polyclonal Antibody, 50ul Plasmid Preparation Alternative splicing results in multipleThe protein encoded by this gene is a member of the serine arginine (SR) rich family of pre mRNA splicing factors, which constitute part of the spliceosome. Each of these factors contains an RNA recognition motif (RRM) for binding RNA and an RS domain for binding other proteins. The RS domain is rich in serine and arginine residues and facilitates interaction between different SR splicing factors. In addition to being critical for mRNA splicing, the

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