Dystrophin

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== Genetics and Expression of the Protein ==
== Genetics and Expression of the Protein ==
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Dystrophin is a member of the β-spectrin/α-actinin protein family and is expressed from one of the largest genes in the human genome, DMD (Duchenne Muscular Dystrophy Gene) spanning 2.3 megabases at locus Xp21 . The tissue distribution of the protein’s expression is indicated by the three separate promoters for dystrophin expression present in the brain, muscle, and purkinji’s, although the protein is most abundant in striated muscle fibers found in skeletal muscles and cardiac muscle [4]. Additionally, internal promoters that lie within the transcript allow for genesis of shortened expressions of COOH-terminal isoforms; these isoforms contain binding sites for association with multiple dystrophin-associated proteins (DAPs) [2]. These truncated forms expressed by alternative promoters can be used in non-muscle tissues with unique amino-terminus sites. [4].
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Dystrophin is a member of the β-spectrin/α-actinin protein family and is expressed from one of the largest genes in the human genome, DMD (Duchenne Muscular Dystrophy Gene) spanning 2.3 megabases at locus Xp21 . The tissue distribution of the protein’s expression is indicated by the three separate promoters for dystrophin expression present in the brain, muscle, and purkinji’s, although the protein is most abundant in striated muscle fibers found in skeletal muscles and cardiac muscle [4]. Additionally, internal promoters that lie within the transcript allow for genesis of shortened expressions of COOH-terminal isoforms; these isoforms contain binding sites for association with multiple dystrophin-associated proteins (DAPs) <ref name="Second">“Dystrophin Complex Functions as a Scaffold for Signalling Proteins.” Biochimica Et Biophysica Acta (BBA) - Biomembranes, Elsevier, 7 Sept. 2013, www.sciencedirect.com/science/article/pii/S0005273613003027?via%3Dihub.</ref>. These truncated forms expressed by alternative promoters can be used in non-muscle tissues with unique amino-terminus sites. [4].
== Structure and Function ==
== Structure and Function ==

Revision as of 17:25, 4 May 2019

PDB ID 6f6z

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References

  1. 1.0 1.1 (García-Pelagio KP, Bloch RJ, Ortega A, González-Serratos H (March 2011) "Biomechanics of the sarcolemma and costameres in single skeletal muscle fibers from normal and dystrophin-null mice".) www.ncbi.nlm.nih.gov./pmc/articles/PMC4326082/
  2. “Dystrophin Complex Functions as a Scaffold for Signalling Proteins.” Biochimica Et Biophysica Acta (BBA) - Biomembranes, Elsevier, 7 Sept. 2013, www.sciencedirect.com/science/article/pii/S0005273613003027?via%3Dihub.

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