Group:MUZIC:Telethonin

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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.
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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 name="Mason"> PMID:16678796 </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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Defects in the MLP-Tcap association are linked to human dilated cardiomyopathy and heart failure (Knöll 2002). Mutations that affect ability of MLP to interact with telethonin result in the loss of telethonin binding, facilitating its mislocalization from the complex with titin, leading to defects in the Z-disc and progression of dilated cardiomyopathy. Knöll et al. conclude that genetic mutations causing a incorrect interaction of telethonin with MLP can lead to a development of human dilated cardiomyopathy through modifications in the conformation and function of titin. <ref name="h" />
Defects in the MLP-Tcap association are linked to human dilated cardiomyopathy and heart failure (Knöll 2002). Mutations that affect ability of MLP to interact with telethonin result in the loss of telethonin binding, facilitating its mislocalization from the complex with titin, leading to defects in the Z-disc and progression of dilated cardiomyopathy. Knöll et al. conclude that genetic mutations causing a incorrect interaction of telethonin with MLP can lead to a development of human dilated cardiomyopathy through modifications in the conformation and function of titin. <ref name="h" />
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It was reported that in 10 cases of neurogenic atrophy there was a decreased staining for telethonin in type II fibers, and in early stages of fiber atrophy, <ref>PMID: 11763198</ref> indicating a selective downregulation of telethonin. These observations can be related to in vivo studies done in rats, in which after short term denervation (two days), Tcap transcript is reduced by about 50% in skeletal muscle. <ref>PMID:10208846</ref>.
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It was reported that in 10 cases of neurogenic atrophy there was a decreased staining for telethonin in type II fibers, and in early stages of fiber atrophy, <ref>PMID: 11763198</ref> indicating a selective downregulation of telethonin. These observations can be related to in vivo studies done in rats, in which after short term denervation (two days), Tcap transcript is reduced by about 50% in skeletal muscle. <ref name="Mason" />.
<scene name='User:Marcia_Ivonne_Pena_Paz/workbench/Telethonin/Telethonin_red/2'>Telethonin</scene>
<scene name='User:Marcia_Ivonne_Pena_Paz/workbench/Telethonin/Telethonin_red/2'>Telethonin</scene>

Revision as of 12:05, 22 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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