Group:MUZIC:Telethonin

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It is a small protein of 19kDa, 167 amino acids. It is predominantly expressed in striated muscle. It is a structural protein of the muscle; it is associated to the Z-disc in the sarcomere. It acts as multifunctional protein linking titin and other proteins implicated in sarcomere structure and signalling pathways.
It is a small protein of 19kDa, 167 amino acids. It is predominantly expressed in striated muscle. It is a structural protein of the muscle; it is associated to the Z-disc in the sarcomere. It acts as multifunctional protein linking titin and other proteins implicated in sarcomere structure and signalling pathways.
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== Gene regulation and expression ==
== Gene regulation and expression ==
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It is encoded by the ''Tcap'' gene, in mice (''Mus musculus'') and humans (''Homo sapiens'').
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It is encoded by the ''Tcap'' gene, in mice (''Mus musculus'') and ''TCAP''humans (''Homo sapiens'').
In mice it is located in chromosome 11, in humans in the long arm of chromosome 17. ''Tcap'' is encoded by two exons, and has non-conserved intragenic sequences. The gene is flanked by two other genes, namely ''Stard3'' upstream separated by 2,8kb, and ''Pnmt1'' downstream separated by 1,7kb. It has three conserved E-box elements at -103bp (E1), -272bp (E2), and -2067bp (E3).
In mice it is located in chromosome 11, in humans in the long arm of chromosome 17. ''Tcap'' is encoded by two exons, and has non-conserved intragenic sequences. The gene is flanked by two other genes, namely ''Stard3'' upstream separated by 2,8kb, and ''Pnmt1'' downstream separated by 1,7kb. It has three conserved E-box elements at -103bp (E1), -272bp (E2), and -2067bp (E3).
For the full activation of the gene the regulation of E1 is highly important. MyoD plays an important role in this regulation all through development, while myogenin mainly during late differentiation into myoblasts. <ref>PMID:21305318</ref>
For the full activation of the gene the regulation of E1 is highly important. MyoD plays an important role in this regulation all through development, while myogenin mainly during late differentiation into myoblasts. <ref>PMID:21305318</ref>
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At the transcriptional level it is thought that there is only one isoform of Tcap, and it is one of the most abundant transcripts in skeletal muscle <ref>PMID:9350988</ref>. It does not have different levels of expression in different types of skeletal muscle; levels of expression of ''Tcap'' are lower in neonatal compared to adult striated muscle. The transcript is accumulated in a linear pattern similar to that of the myosin heavy chain <ref>PMID: 10208846</ref>. In these same studies it was reported that denervation leads to decrease in the expression of Tcap, suggesting that locomotor activity is a potential regulator of its maintenance.
At the transcriptional level it is thought that there is only one isoform of Tcap, and it is one of the most abundant transcripts in skeletal muscle <ref>PMID:9350988</ref>. It does not have different levels of expression in different types of skeletal muscle; levels of expression of ''Tcap'' are lower in neonatal compared to adult striated muscle. The transcript is accumulated in a linear pattern similar to that of the myosin heavy chain <ref>PMID: 10208846</ref>. In these same studies it was reported that denervation leads to decrease in the expression of Tcap, suggesting that locomotor activity is a potential regulator of its maintenance.
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== ''Tcap'' gene product, the protein Telethonin ==
== ''Tcap'' gene product, the protein Telethonin ==
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Telethonin protein is found mostly in skeletal and cardiac muscle. It is one of the major components of the sarcomere, it is localized to the Z-disc. It was also reported a nuclear localization.<ref>PMID:12379311 </ref> <ref>PMID:16678796 </ref>
Telethonin protein is found mostly in skeletal and cardiac muscle. It is one of the major components of the sarcomere, it is localized to the Z-disc. It was also reported a nuclear localization.<ref>PMID:12379311 </ref> <ref>PMID:16678796 </ref>
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There is an interaction with MDM2 N-terminal. MDM2 is capable of redirecting telethonin to the nucleus. Telethonin is inhibited by MDM2 in a dose dependent manner. In cells MDM2 is involved in the regulation of proteasomal turnover of telethonin. <ref>PMID:16678796 </ref>
There is an interaction with MDM2 N-terminal. MDM2 is capable of redirecting telethonin to the nucleus. Telethonin is inhibited by MDM2 in a dose dependent manner. In cells MDM2 is involved in the regulation of proteasomal turnover of telethonin. <ref>PMID:16678796 </ref>
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== Pathologies associated with telethonin ==
== Pathologies associated with telethonin ==
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Different mutations in telethonin have been associated with several myopathies. Mutations can lead to limb-girdle muscular dystrophy type 2G (LGMD2G) <ref>PMID: 10655062 </ref>, to hypertrophic cardiopathy., <ref>PMID: 12507422</ref>, and dilated cardiomyopathy.
Different mutations in telethonin have been associated with several myopathies. Mutations can lead to limb-girdle muscular dystrophy type 2G (LGMD2G) <ref>PMID: 10655062 </ref>, to hypertrophic cardiopathy., <ref>PMID: 12507422</ref>, and dilated cardiomyopathy.

Revision as of 09:13, 16 August 2011

Telethonin

Telethonin crystal structure by Zou et al. (2006) interacting with Z1 and Z2 titin domains(PDB entry 1ya5)

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Proteopedia Page Contributors and Editors (what is this?)

Marcia Ivonne Peña Paz, Nikos Pinotsis, Jaime Prilusky

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