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48 results on '"Steven Reiken"'

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1. Role of oxidation of excitation-contraction coupling machinery in age-dependent loss of muscle function in

2. A drug and ATP binding site in type 1 ryanodine receptor

3. RyR1-related myopathy mutations in ATP and calcium binding sites impair channel regulation

4. Ryanodine receptor remodeling in cardiomyopathy and muscular dystrophy caused by lamin A/C gene mutation

5. Late Ventilator-Induced Diaphragmatic Dysfunction After Extubation

6. Acute RyR1 Ca

7. Ryanodine Receptor Calcium Leak in Circulating B-Lymphocytes as a Biomarker in Heart Failure

8. Post-translational remodeling of ryanodine receptor induces calcium leak leading to Alzheimer’s disease-like pathologies and cognitive deficits

9. Calcium release channel RyR2 regulates insulin release and glucose homeostasis

10. Structure of a mammalian ryanodine receptor

11. Modifications of skeletal muscle ryanodine receptor type 1 and exercise intolerance in heart failure

12. Leaky ryanodine receptors contribute to diaphragmatic weakness during mechanical ventilation

13. Calcium Leak Through Ryanodine Receptors Leads to Atrial Fibrillation in 3 Mouse Models of Catecholaminergic Polymorphic Ventricular Tachycardia

14. Ryanodine Receptor Oxidation Causes Intracellular Calcium Leak and Muscle Weakness in Aging

15. Role of CaMKIIδ phosphorylation of the cardiac ryanodine receptor in the force frequency relationship and heart failure

16. Remodeling of ryanodine receptor complex causes 'leaky' channels: A molecular mechanism for decreased exercise capacity

17. Mitochondrial oxidative stress promotes atrial fibrillation

18. Excess TGF-β mediates muscle weakness associated with bone metastases in mice

19. Phosphodiesterase 4D Deficiency in the Ryanodine-Receptor Complex Promotes Heart Failure and Arrhythmias

20. Left ventricular assist device support normalizes left and right ventricular beta-adrenergic pathway properties

21. FKBP12.6 Deficiency and Defective Calcium Release Channel (Ryanodine Receptor) Function Linked to Exercise-Induced Sudden Cardiac Death

22. PKA phosphorylation activates the calcium release channel (ryanodine receptor) in skeletal muscle

23. Mitochondrial calcium overload is a key determinant in heart failure

24. Regulation of Ryanodine Receptors via Macromolecular Complexes A Novel Role for Leucine/Isoleucine Zippers

25. Dilated Cardiomyopathy and Sudden Death Resulting From Constitutive Activation of Protein Kinase A

26. Chronic Unloading by Left Ventricular Assist Device Reverses Contractile Dysfunction and Alters Gene Expression in End-Stage Heart Failure

27. Genetically enhancing mitochondrial antioxidant activity improves muscle function in aging

28. Ryanodine receptor leak mediated by caspase-8 activation leads to left ventricular injury after myocardial ischemia-reperfusion

29. Role of chronic ryanodine receptor phosphorylation in heart failure and β-adrenergic receptor blockade in mice

30. Phosphorylation of the ryanodine receptor mediates the cardiac fight or flight response in mice

31. Leaky RyR2 trigger ventricular arrhythmias in Duchenne muscular dystrophy

32. Hypernitrosylated ryanodine receptor calcium release channels are leaky in dystrophic muscle

33. Leaky Ca2+ release channel/ryanodine receptor 2 causes seizures and sudden cardiac death in mice

34. Nonshivering thermogenesis protects against defective calcium handling in muscle

35. A mechanism for sudden infant death syndrome (SIDS): Stress-induced leak via ryanodine receptors

36. Stabilization of cardiac ryanodine receptor prevents intracellular calcium leak and arrhythmias

37. Analysis of calstabin2 (FKBP12.6)–ryanodine receptor interactions: Rescue of heart failure by calstabin2 in mice

38. Enhancing calstabin binding to ryanodine receptors improves cardiac and skeletal muscle function in heart failure

39. Defective cardiac ryanodine receptor regulation during atrial fibrillation

40. Sudden death in familial polymorphic ventricular tachycardia associated with calcium release channel (ryanodine receptor) leak

41. Ca 2+ /Calmodulin-Dependent Protein Kinase II Phosphorylation Regulates the Cardiac Ryanodine Receptor

42. Defects in ryanodine receptor calcium release in skeletal muscle from post-myocardial infarct rats

43. Beta-blockers restore calcium release channel function and improve cardiac muscle performance in human heart failure

44. Protein kinase A phosphorylation of the cardiac calcium release channel (ryanodine receptor) in normal and failing hearts. Role of phosphatases and response to isoproterenol

45. Progression of heart failure: is protein kinase a hyperphosphorylation of the ryanodine receptor a contributing factor?

46. beta-adrenergic receptor blockers restore cardiac calcium release channel (ryanodine receptor) structure and function in heart failure

47. FKBP12 binding modulates ryanodine receptor channel gating

48. Reply from Daniel C. Andersson, Matthew J. Betzenhauser, Steven Reiken, Alisa Umanskaya, Takayuki Shiomi and Andrew R. Marks

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