Novel Fluorescence Tools for the Discovery of Cardiac Calcium Pump Therapeutics
暂无分享,去创建一个
[1] T. Cebula,et al. DNA deaminating ability and genotoxicity of nitric oxide and its progenitors. , 1991, Science.
[2] Tory M. Schaaf,et al. High-Throughput Spectral and Lifetime-Based FRET Screening in Living Cells to Identify Small-Molecule Effectors of SERCA , 2016, SLAS discovery : advancing life sciences R & D.
[3] G Inesi,et al. Use of thapsigargin to study Ca2+ homeostasis in cardiac cells , 1995, Bioscience reports.
[4] Ben Corry,et al. Quantitative Förster resonance energy transfer efficiency measurements using simultaneous spectral unmixing of excitation and emission spectra , 2013, Journal of biomedical optics.
[5] K. Zsebo,et al. Long-Term Effects of AAV1/SERCA2a Gene Transfer in Patients With Severe Heart Failure: Analysis of Recurrent Cardiovascular Events and Mortality , 2014, Circulation research.
[6] Iyuki Namekata,et al. Ellagic acid and gingerol, activators of the sarco-endoplasmic reticulum Ca²⁺-ATPase, ameliorate diabetes mellitus-induced diastolic dysfunction in isolated murine ventricular myocardia. , 2013, European journal of pharmacology.
[7] Jean-Christophe Leroux,et al. Development and physico-chemical characterization of a liposomal formulation of istaroxime. , 2011, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[8] A. Rishi,et al. Gene amplification and transcriptional upregulation of the sarco/endoplasmic reticulum Ca2+ transport ATPase in thapsigargin-resistant hamster smooth muscle cells. , 1998, Nucleic acids research.
[9] T. Sato,et al. Lusitropic effect of MCC-135 is associated with improvement of sarcoplasmic reticulum function in ventricular muscles of rats with diabetic cardiomyopathy. , 2001, The Journal of pharmacology and experimental therapeutics.
[10] J. García-Sancho,et al. Two distinct calcium pools in the endoplasmic reticulum of HEK-293T cells. , 2011, The Biochemical journal.
[11] J. Michel,et al. Constitutive Cardiac Overexpression of Sarcoplasmic/Endoplasmic Reticulum Ca2+-ATPase Delays Myocardial Failure After Myocardial Infarction in Rats at a Cost of Increased Acute Arrhythmias , 2004, Circulation.
[12] A. Verkhratsky,et al. Calcium signalling and calcium channels: evolution and general principles. , 2014, European journal of pharmacology.
[13] R. H. Scott,et al. Actions of ethanolamine on cultured sensory neurones from neonatal rats , 2010, Neuroscience Letters.
[14] David D. Thomas,et al. ATP–Binding Cassette Transporter Structure Changes Detected by Intramolecular Fluorescence Energy Transfer for High-Throughput Screening , 2015, Molecular Pharmacology.
[15] J. Hulot,et al. Gene therapy for the treatment of heart failure: promise postponed. , 2016, European heart journal.
[16] P. Pedersen. Transport ATPases into the year 2008: a brief overview related to types, structures, functions and roles in health and disease , 2007, Journal of bioenergetics and biomembranes.
[17] K. Van Baelen,et al. Dissection of the Functional Differences between Sarco(endo)plasmic Reticulum Ca2+-ATPase (SERCA) 1 and 3 Isoforms by Steady-state and Transient Kinetic Analyses* , 2002, The Journal of Biological Chemistry.
[18] P. Pinton,et al. Serca1 Truncated Proteins Unable to Pump Calcium Reduce the Endoplasmic Reticulum Calcium Concentration and Induce Apoptosis , 2001, The Journal of cell biology.
[19] B Gerbert,et al. [Thyroid hormone and the cardiovascular system]. , 2005, Deutsche medizinische Wochenschrift.
[20] V. Verkhusha,et al. Guide to red fluorescent proteins and biosensors for flow cytometry. , 2011, Methods in cell biology.
[21] G Inesi,et al. Mechanism of calcium transport. , 1985, Annual review of physiology.
[22] David D. Thomas,et al. Structural and functional dynamics of an integral membrane protein complex modulated by lipid headgroup charge. , 2012, Journal of molecular biology.
[23] M. Rocchetti,et al. Role and mechanism of subcellular Ca2+ distribution in the action of two inotropic agents with different toxicity. , 2011, Journal of molecular and cellular cardiology.
[24] James D. Johnson,et al. Glucose and Endoplasmic Reticulum Calcium Channels Regulate HIF-1β via Presenilin in Pancreatic β-Cells* , 2008, Journal of Biological Chemistry.
[25] S. Ellahham,et al. Hyperthyroid heart disease , 2000, Clinical cardiology.
[26] D. Shcherbo,et al. UvA-DARE ( Digital Academic Repository ) Practical and reliable FRET / FLIM pair of fluorescent proteins , 2009 .
[27] C. Kaminski,et al. Lifetime imaging of a fluorescent protein sensor reveals surprising stability of ER thiol redox , 2013, The Journal of cell biology.
[28] M. Berridge,et al. Inositol trisphosphate and calcium signalling mechanisms. , 2009, Biochimica et biophysica acta.
[29] J. Reiber,et al. Effect of caldaret on the incidence of severe left ventricular dysfunction in patients with ST-elevation myocardial infarction undergoing primary coronary intervention. , 2009, The American journal of cardiology.
[30] L. Dode,et al. Identification, Expression, Function, and Localization of a Novel (Sixth) Isoform of the Human Sarco/Endoplasmic Reticulum Ca2+ATPase 3 Gene* , 2004, Journal of Biological Chemistry.
[31] G. Inesi,et al. Cooperative calcium binding and ATPase activation in sarcoplasmic reticulum vesicles. , 1980, The Journal of biological chemistry.
[32] G. Inesi,et al. A comparative study of calcium transients by isotopic tracer, metallochromic indicator, and intrinsic fluorescence in sarcoplasmic reticulum ATPase. , 1984, The Journal of biological chemistry.
[33] J. Hare,et al. Regulation of cardiovascular cellular processes by S-nitrosylation. , 2012, Biochimica et biophysica acta.
[34] David D. Thomas,et al. Site-directed spectroscopy of cardiac myosin-binding protein C reveals effects of phosphorylation on protein structural dynamics , 2016, Proceedings of the National Academy of Sciences.
[35] Joseph M. Muretta,et al. Direct real-time detection of the structural and biochemical events in the myosin power stroke , 2015, Proceedings of the National Academy of Sciences.
[36] K. Cusi,et al. The Future of Thiazolidinedione Therapy in the Management of Type 2 Diabetes Mellitus , 2013, Current Diabetes Reports.
[37] M. Periasamy,et al. Sarcolipin and phospholamban as regulators of cardiac sarcoplasmic reticulum Ca2+ ATPase. , 2007, Journal of molecular and cellular cardiology.
[38] M. Periasamy,et al. Threonine-5 at the N-terminus can modulate sarcolipin function in cardiac myocytes. , 2009, Journal of molecular and cellular cardiology.
[39] T. Karl,et al. Triiodothyronine Supplementation in Infants and Children Undergoing Cardiopulmonary Bypass (TRICC): A Multicenter Placebo-Controlled Randomized Trial: Age Analysis , 2010, Circulation.
[40] Michael Z. Lin,et al. Improving FRET Dynamic Range with Bright Green and Red Fluorescent Proteins , 2013 .
[41] R. Hajjar,et al. Targeting sarcoplasmic reticulum calcium ATPase by gene therapy. , 2013, Human gene therapy.
[42] C. Toyoshima,et al. Crystal structures of the calcium pump and sarcolipin in the Mg2+-bound E1 state , 2013, Nature.
[43] B. Roufogalis,et al. ThermoTRP Channels in Nociceptors: Taking a Lead from Capsaicin Receptor TRPV1 , 2008, Current neuropharmacology.
[44] Mark A Sussman,et al. Overexpression of SERCA2b in the Heart Leads to an Increase in Sarcoplasmic Reticulum Calcium Transport Function and Increased Cardiac Contractility* , 2000, The Journal of Biological Chemistry.
[45] Silas J Leavesley,et al. Assessing FRET using spectral techniques , 2013, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[46] David D. Thomas,et al. Open and closed conformations of the isolated transmembrane domain of death receptor 5 support a new model of activation. , 2014, Biophysical journal.
[47] Seong-ho Lee,et al. Multiple mechanisms are involved in 6‐gingerol‐induced cell growth arrest and apoptosis in human colorectal cancer cells , 2008, Molecular carcinogenesis.
[48] F. Michelangeli,et al. The Effects of the Phenylalanine 256 to Valine Mutation on the Sensitivity of Sarcoplasmic/Endoplasmic Reticulum Ca2+ ATPase (SERCA) Ca2+ Pump Isoforms 1, 2, and 3 to Thapsigargin and Other Inhibitors* , 2006, Journal of Biological Chemistry.
[49] M. Berridge,et al. The versatility and universality of calcium signalling , 2000, Nature Reviews Molecular Cell Biology.
[50] R. Westerink,et al. Comparison of plate reader-based methods with fluorescence microscopy for measurements of intracellular calcium levels for the assessment of in vitro neurotoxicity. , 2014, Neurotoxicology.
[51] T. Duhamel,et al. The regulation of sarco(endo)plasmic reticulum calcium-ATPases (SERCA). , 2015, Canadian journal of physiology and pharmacology.
[52] R. Hajjar,et al. Ca2+-ATPases in non-failing and failing heart: evidence for a novel cardiac sarco/endoplasmic reticulum Ca2+-ATPase 2 isoform (SERCA2c). , 2006, The Biochemical journal.
[53] Y. Sugita,et al. Structural basis of ion pumping by Ca2+‐ATPase of sarcoplasmic reticulum , 2003, Annual review of biochemistry.
[54] J. Hare,et al. Nitroso–Redox Interactions in the Cardiovascular System , 2006, Circulation.
[55] Amy E Palmer,et al. Measuring calcium signaling using genetically targetable fluorescent indicators , 2006, Nature Protocols.
[56] K. Beam,et al. Triclosan impairs excitation–contraction coupling and Ca2+ dynamics in striated muscle , 2012, Proceedings of the National Academy of Sciences.
[57] G. Marazzi,et al. Novel analogues of istaroxime, a potent inhibitor of Na+,K+-ATPase: synthesis and structure-activity relationship. , 2008, Journal of medicinal chemistry.
[58] J. Berger,et al. The mechanisms of action of PPARs. , 2002, Annual review of medicine.
[59] J. Siegel,et al. Imaging the environment of green fluorescent protein. , 2002, Biophysical journal.
[60] Ernesto Carafoli,et al. Calcium pumps in health and disease. , 2009, Physiological reviews.
[61] M. Michalak,et al. Ca(2+) homeostasis and endoplasmic reticulum (ER) stress: An integrated view of calcium signaling. , 2015, Biochemical and biophysical research communications.
[62] David D. Thomas,et al. Phospholamban mutants compete with wild type for SERCA binding in living cells. , 2012, Biochemical and biophysical research communications.
[63] K. Flaherty,et al. Sarcolipin is a newly identified regulator of muscle-based thermogenesis in mammals , 2012, Nature Medicine.
[64] R. Guidelli,et al. Clotrimazole Inhibits the Ca2+-ATPase (SERCA) by Interfering with Ca2+ Binding and Favoring the E2 Conformation* , 2006, Journal of Biological Chemistry.
[65] Anuradha Kalyanasundaram,et al. SERCA pump isoforms: Their role in calcium transport and disease , 2007, Muscle & nerve.
[66] Bengt Svensson,et al. Interdomain fluorescence resonance energy transfer in SERCA probed by cyan-fluorescent protein fused to the actuator domain. , 2008, Biochemistry.
[67] R. Tsien. Cyclic AMP and contractile activity in heart. , 1977, Advances in cyclic nucleotide research.
[68] P. Vangheluwe,et al. Factors controlling the activity of the SERCA2a pump in the normal and failing heart , 2009, BioFactors.
[69] O. Parodi,et al. Istaroxime, a stimulator of sarcoplasmic reticulum calcium adenosine triphosphatase isoform 2a activity, as a novel therapeutic approach to heart failure. , 2007, The American journal of cardiology.
[70] Tory M. Schaaf,et al. Discovery of Enzyme Modulators via High-Throughput Time-Resolved FRET in Living Cells , 2014, Journal of biomolecular screening.
[71] J. Copello,et al. Cross-Reactivity of Ryanodine Receptors with Plasma Membrane Ion Channel Modulators , 2011, Molecular Pharmacology.
[72] Ian Parker,et al. SERCA pump activity is physiologically regulated by presenilin and regulates amyloid beta production. , 2008, The Journal of general physiology.
[73] Stephan E Lehnart,et al. Modulation of the ryanodine receptor and intracellular calcium. , 2007, Annual review of biochemistry.
[74] P. Ponikowski,et al. Prevalence of AAV1 neutralizing antibodies and consequences for a clinical trial of gene transfer for advanced heart failure , 2015, Gene Therapy.
[75] P. Ratcliffe,et al. Regulation of angiogenesis by hypoxia: role of the HIF system , 2003, Nature Medicine.
[76] Joseph M. Muretta,et al. Fluorescence lifetime plate reader: resolution and precision meet high-throughput. , 2014, The Review of scientific instruments.
[77] G. Filippatos,et al. Istaroxime: Is the Remedy Better than the Disease? , 2011, Cardiovascular Drugs and Therapy.
[78] David D. Thomas,et al. Time-resolved FRET reveals the structural mechanism of SERCA-PLB regulation. , 2014, Biochemical and biophysical research communications.
[79] N. Smolin,et al. A Structural Mechanism for Calcium Transporter Headpiece Closure , 2014, The journal of physical chemistry. B.
[80] Nobuhiro Ohta,et al. Intracellular pH sensing using autofluorescence lifetime microscopy. , 2011, The journal of physical chemistry. B.
[81] Sten Orrenius,et al. Calcium: Regulation of cell death: the calcium–apoptosis link , 2003, Nature Reviews Molecular Cell Biology.
[82] S. Aditya,et al. Istaroxime: A rising star in acute heart failure , 2012, Journal of pharmacology & pharmacotherapeutics.
[83] David D. Thomas,et al. Sarcolipin Promotes Uncoupling of the SERCA Ca2+ Pump by Inducing a Structural Rearrangement in the Energy-Transduction Domain. , 2016, Biochemistry.
[84] G Inesi,et al. Regulation of steady state filling in sarcoplasmic reticulum. Roles of back-inhibition, leakage, and slippage of the calcium pump. , 1989, The Journal of biological chemistry.
[85] B. Shoichet,et al. Identification and prediction of promiscuous aggregating inhibitors among known drugs. , 2003, Journal of medicinal chemistry.
[86] R. Hajjar,et al. Benefit of SERCA2a gene transfer to vascular endothelial and smooth muscle cells: a new aspect in therapy of cardiovascular diseases. , 2013, Current vascular pharmacology.
[87] J. Lakowicz. Principles of fluorescence spectroscopy , 1983 .
[88] Alexander Kyrychenko,et al. High-performance time-resolved fluorescence by direct waveform recording. , 2010, The Review of scientific instruments.
[89] J. East,et al. A diversity of SERCA Ca2+ pump inhibitors. , 2011, Biochemical Society transactions.
[90] R. Bobe,et al. Multiple and diverse coexpression, location, and regulation of additional SERCA2 and SERCA3 isoforms in nonfailing and failing human heart. , 2010, Journal of molecular and cellular cardiology.
[91] G. Inesi,et al. Regulation and rate limiting mechanisms of Ca2+ ATPase (SERCA2) expression in cardiac myocytes , 2011, Molecular and Cellular Biochemistry.
[92] M. J. Cormier,et al. Primary structure of the Aequorea victoria green-fluorescent protein. , 1992, Gene.
[93] M. Gottesman,et al. Targeting multidrug resistance in cancer , 2006, Nature Reviews Drug Discovery.
[94] Nathaniel J. Traaseth,et al. Structure and topology of monomeric phospholamban in lipid membranes determined by a hybrid solution and solid-state NMR approach , 2009, Proceedings of the National Academy of Sciences.
[95] Y. Mahmmoud,et al. Uncoupling of sarcoplasmic reticulum Ca2+‐ATPase by N‐arachidonoyl dopamine. Members of the endocannabinoid family as thermogenic drugs , 2012, British journal of pharmacology.
[96] S. Minamisawa. Enhancement of calcium uptake via the sarcoplasmic reticulum is a potent therapeutic strategy for dilated cardiomyopathy and heart failure , 2000 .
[97] T. Pozzan,et al. Reduction of Ca2+ stores and capacitative Ca2+ entry is associated with the familial Alzheimer's disease presenilin-2 T122R mutation and anticipates the onset of dementia , 2005, Neurobiology of Disease.
[98] Jeffrey M Larson,et al. The Nikon C1si combines high spectral resolution, high sensitivity, and high acquisition speed , 2006, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[99] P. Lampe,et al. Phosphorylation of Connexin43 on Serine368 by Protein Kinase C Regulates Gap Junctional Communication , 2000, The Journal of cell biology.
[100] M. Thompson,et al. Brain-derived neurotrophic factor in cigarette smoke-induced airway hyperreactivity. , 2013, American journal of respiratory cell and molecular biology.
[101] I. V. Negrashov,et al. Direct detection of phospholamban and sarcoplasmic reticulum Ca-ATPase interaction in membranes using fluorescence resonance energy transfer. , 2004, Biochemistry.
[102] Stephen C. Cannon,et al. A peptide encoded by a transcript annotated as long noncoding RNA enhances SERCA activity in muscle , 2016, Science.
[103] P. Nissen,et al. Modulatory and catalytic modes of ATP binding by the calcium pump , 2006, The EMBO journal.
[104] John M. Shelton,et al. Widespread control of calcium signaling by a family of SERCA-inhibiting micropeptides , 2016, Science Signaling.
[105] H. Ceulemans,et al. Structural basis for the high Ca2+ affinity of the ubiquitous SERCA2b Ca2+ pump , 2009, Proceedings of the National Academy of Sciences.
[106] I. Sakata,et al. A high-throughput direct fluorescence resonance energy transfer-based assay for analyzing apoptotic proteases using flow cytometry and fluorescence lifetime measurements. , 2015, Analytical biochemistry.
[107] Amy E Palmer,et al. Bcl-2-mediated alterations in endoplasmic reticulum Ca2+ analyzed with an improved genetically encoded fluorescent sensor. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[108] K K Baldridge,et al. The structure of the chromophore within DsRed, a red fluorescent protein from coral. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[109] Kamran Honarnejad,et al. FRET-Based Calcium Imaging , 2013, Journal of biomolecular screening.
[110] Shusen Xie,et al. Spectral wide-field microscopic fluorescence resonance energy transfer imaging in live cells , 2015, Journal of biomedical optics.
[111] Ruili Huang,et al. Fluorescence spectroscopic profiling of compound libraries. , 2008, Journal of medicinal chemistry.
[112] Tory M. Schaaf,et al. Spectral Unmixing Plate Reader: High-Throughput, High-Precision FRET Assays in Living Cells , 2017, SLAS discovery : advancing life sciences R & D.
[113] M. Berridge,et al. Calcium signalling remodelling and disease. , 2012, Biochemical Society transactions.
[114] J. Brachmann,et al. Results of the first clinical study of adjunctive CAldaret (MCC-135) in patients undergoing primary percutaneous coronary intervention for ST-Elevation Myocardial Infarction: the randomized multicentre CASTEMI study. , 2006, European heart journal.
[115] T. Bányász,et al. Effects of pioglitazone on cardiac ion currents and action potential morphology in canine ventricular myocytes. , 2013, European journal of pharmacology.
[116] P. Nissen,et al. The sarcoplasmic Ca2+-ATPase: design of a perfect chemi-osmotic pump , 2010, Quarterly Reviews of Biophysics.
[117] David D. Thomas,et al. Atomic-Level Characterization of the Activation Mechanism of SERCA by Calcium , 2011, PloS one.
[118] C. Strock,et al. Detailed characterization of the cooperative mechanism of Ca(2+) binding and catalytic activation in the Ca(2+) transport (SERCA) ATPase. , 2000, Biochemistry.
[119] F. del Monte,et al. Compartmentalized expression of three novel sarco/endoplasmic reticulum Ca2+ATPase 3 isoforms including the switch to ER stress, SERCA3f, in non-failing and failing human heart. , 2009, Cell calcium.
[120] David D. Thomas,et al. Functional and physical competition between phospholamban and its mutants provides insight into the molecular mechanism of gene therapy for heart failure. , 2011, Biochemical and biophysical research communications.
[121] G. Sieck,et al. Effect of proinflammatory cytokines on regulation of sarcoplasmic reticulum Ca2+ reuptake in human airway smooth muscle. , 2009, American journal of physiology. Lung cellular and molecular physiology.
[122] Jiqiu Chen,et al. High-Throughput FRET Assay Yields Allosteric SERCA Activators , 2013, Journal of biomolecular screening.
[123] David D. Thomas,et al. Controlling the Inhibition of the Sarcoplasmic Ca2+-ATPase by Tuning Phospholamban Structural Dynamics* , 2007, Journal of Biological Chemistry.
[124] Á. Zarain-Herzberg,et al. PPAR-γ activation restores pancreatic islet SERCA2 levels and prevents β-cell dysfunction under conditions of hyperglycemic and cytokine stress. , 2012, Molecular endocrinology.
[125] David D. Thomas,et al. Phosphorylated phospholamban stabilizes a compact conformation of the cardiac calcium-ATPase. , 2013, Biophysical journal.
[126] Ronald A. Li,et al. Correction of human phospholamban R14del mutation associated with cardiomyopathy using targeted nucleases and combination therapy , 2015, Nature Communications.
[127] Amy E Palmer,et al. Design and application of genetically encoded biosensors. , 2011, Trends in biotechnology.
[128] C. Brandl,et al. Adult forms of the Ca2+ATPase of sarcoplasmic reticulum. Expression in developing skeletal muscle. , 1987, The Journal of biological chemistry.
[129] Hiromi Nomura,et al. Structural changes in the calcium pump accompanying the dissociation of calcium , 2002, Nature.
[130] M. Periasamy,et al. Overexpression of sarcolipin decreases myocyte contractility and calcium transient. , 2005, Cardiovascular research.
[131] J. East,et al. Stimulation of the Ca(2+)-ATPase of sarcoplasmic reticulum by disulfiram. , 1996, The Biochemical journal.
[132] David D. Thomas,et al. 2-Color Calcium Pump Reveals Closure of the Cytoplasmic Headpiece with Calcium Binding , 2012, PloS one.
[133] A. Verkhratsky,et al. Evolution of calcium homeostasis: from birth of the first cell to an omnipresent signalling system. , 2007, Cell calcium.
[134] David D. Thomas,et al. Accurate quantitation of phospholamban phosphorylation by immunoblot. , 2012, Analytical biochemistry.
[135] Barry Greenberg,et al. Calcium Upregulation by Percutaneous Administration of Gene Therapy in Cardiac Disease (CUPID): A Phase 2 Trial of Intracoronary Gene Therapy of Sarcoplasmic Reticulum Ca2+-ATPase in Patients With Advanced Heart Failure , 2011, Circulation.
[136] Steven S. Vogel,et al. Cerulean, Venus, and VenusY67C FRET reference standards. , 2006, Biophysical journal.
[137] Structural dynamics of muscle protein phosphorylation , 2012, Journal of Muscle Research and Cell Motility.
[138] C. Toyoshima,et al. Concerted conformational effects of Ca2+ and ATP are required for activation of sequential reactions in the Ca2+ ATPase (SERCA) catalytic cycle. , 2006, Biochemistry.
[139] Thomas D. Y. Chung,et al. A Simple Statistical Parameter for Use in Evaluation and Validation of High Throughput Screening Assays , 1999, Journal of biomolecular screening.
[140] R. Cornea,et al. A novel SERCA inhibitor demonstrates synergy with classic SERCA inhibitors and targets multidrug-resistant AML. , 2013, Molecular pharmaceutics.
[141] Filip Van Petegem,et al. Ryanodine receptors: structure and function. , 2012 .
[142] M. Berridge,et al. Calcium: Calcium signalling: dynamics, homeostasis and remodelling , 2003, Nature Reviews Molecular Cell Biology.
[143] C. Toyoshima,et al. Structural aspects of ion pumping by Ca2+-ATPase of sarcoplasmic reticulum. , 2008, Archives of biochemistry and biophysics.
[144] D. Bers,et al. FRET-based trilateration of probes bound within functional ryanodine receptors. , 2014, Biophysical journal.