On the footsteps of Triadin and its role in skeletal muscle
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Baishideng Publishing Group Inc.
Reference60 articles.
1. Localization and partial characterization of the oligomeric disulfide-linked molecular weight 95,000 protein (triadin) which binds the ryanodine and dihydropyridine receptors in skeletal muscle triadic vesicles
2. Isolation of a terminal cisterna protein which may link the dihydropyridine receptor to the junctional foot protein in skeletal muscle
3. Knudson CM, Stang KK, Jorgensen AO, Campbell KP. Biochemical characterization of ultrastructural localization of a major junctional sarcoplasmic reticulum glycoprotein (triadin). J Biol Chem 1993;268:12637-12645.
4. Knudson CM, Stang KK, Moomaw CR, Slaughter CA, Campbell KP. Primary structure and topological analysis of a skeletal muscle-specific junctional sarcoplasmic reticulum glycoprotein (triadin). J Biol Chem 1993;268:12646-12654.
5. Biochemical Characterization and Molecular Cloning of Cardiac Triadin
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1. Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence;Aging;2022-12-13
2. Cardiomyocyte-Specific Long Noncoding RNA Regulates Alternative Splicing of the Triadin Gene in the Heart;Circulation;2022-08-30
3. Single nuclei profiling identifies cell specific markers of skeletal muscle aging, sarcopenia and senescence;2021-01-26
4. Distinct regions of triadin are required for targeting and retention at the junctional domain of the sarcoplasmic reticulum;Biochemical Journal;2014-02-14
5. Mapping domains and mutations on the skeletal muscle ryanodine receptor channel;Trends in Molecular Medicine;2012-11
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