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Dweck D, Hus N, Potter JD 
Challenging current paradigms related to cardiomyopathies: Are changes in the Ca2+ sensitivity from myofilaments containing cardiac troponin C mutations (G159D and L29Q) good predictors of the phenotypic outcomes? [JOURNAL ARTICLE]
J Biol Chem 2008 Sep 26.
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Dong WJ, Xing J, Ouyang Y, et al. 
Structural kinetics of cardiac troponin C mutants linked to familial hypertrophic and dilated cardiomyopathy in troponin complexes. [JOURNAL ARTICLE]
J Biol Chem 2007 Dec 5.
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Biesiadecki BJ, Kobayashi T, Walker JS, et al. 
The Troponin C G159D Mutation Blunts Myofilament Desensitization Induced by Troponin I Ser23/24 Phosphorylation. [JOURNAL ARTICLE]
Circ Res 2007 Apr 19.
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Liang B, Chung F, Qu Y, et al. 
The familial hypertrophic cardiomyopathy related cardiac troponin C mutation L29Q affects Ca2+ binding and myofilament contractility. [JOURNAL ARTICLE]
Physiol Genomics 2008 Feb 19.
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Schmidtmann A, Lindow C, Villard S, et al. 
Cardiac troponin C-L29Q, related to hypertrophic cardiomyopathy, hinders the transduction of the protein kinase A dependent phosphorylation signal from cardiac troponin I to C. [Journal Article]
FEBS J 2005 Dec; 272(23):6087-97.
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Kobayashi T, Dong WJ, Burkart EM, et al. 
Effects of protein kinase C dependent phosphorylation and a familial hypertrophic cardiomyopathy-related mutation of cardiac troponin I on structural transition of troponin C and myofilament activation. [Journal Article]
Biochemistry 2004 May 25; 43(20):5996-6004.
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Takahashi-Yanaga F, Morimoto S, Harada K, et al. 
Functional consequences of the mutations in human cardiac troponin I gene found in familial hypertrophic cardiomyopathy. [Journal Article]
J Mol Cell Cardiol 2001 Dec; 33(12):2095-107.
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Rarick HM, Tang HP, Guo XD, et al. 
Interactions at the NH2-terminal interface of cardiac troponin I modulate myofilament activation. [Journal Article]
J Mol Cell Cardiol 1999 Feb; 31(2):363-75.
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Robinson P, Griffiths PJ, Watkins H, et al. 
Dilated and Hypertrophic Cardiomyopathy Mutations in Troponin and {alpha}-Tropomyosin Have Opposing Effects on the Calcium Affinity of Cardiac Thin Filaments. [JOURNAL ARTICLE]
Circ Res 2007 Oct 11.
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