Function And Activity Of Von Willebrand Factor Is Regulated By A Hierarchy Of Mechanical Forces (original) (raw)

Intramolecular Interactions in the N-Domain of Cardiac Troponin C Are Important Determinants of Calcium Sensitivity of Force Development

Karen Reece

Biochemistry, 2008

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Inhibitory Region of Troponin I: Ca 2+ -Dependent Structural and Environmental Changes in the Troponin−Tropomyosin Complex and in Reconstituted Thin Filaments †

Minae Kobayashi, Zygmunt Gryczynski

Biochemistry, 2000

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A fluorescent probe study of Ca2+ binding to the Ca2+-specific sites of cardiac troponin and troponin C

James d. Potter

The Journal of biological chemistry, 1980

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Basic residues within the cardiac troponin T C terminus are required for full inhibition of muscle contraction and limit activation by calcium

Dylan Johnson

Journal of Biological Chemistry, 2019

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Ca 2+ -regulated structural changes in troponin

Christina Karatzaferi

Proceedings of the National Academy of Sciences, 2005

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Troponin T and Ca 2+ Dependence of the Distance between Cys48 and Cys133 of Troponin I in the Ternary Troponin Complex and Reconstituted Thin Filaments

Yin Luo

1997

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Structural dynamics of troponin during activation of skeletal muscle

Yin-biao Sun

Proceedings of the National Academy of Sciences, 2014

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NMR Studies of Ca 2+ Binding to the Regulatory Domains of Cardiac and E41A Skeletal Muscle Troponin C Reveal the Importance of Site I to Energetics of the Induced Structural Changes †

G. Audette

Biochemistry, 1997

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Calcium-Induced Structural Transition in the Regulatory Domain of Human Cardiac Troponin C

Samuel Sykes

Biochemistry, 1997

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Ca2+- and Cross-Bridge-Dependent Changes in N- and C-Terminal Structure of Troponin C in Rat Cardiac Muscle

A. Gordon, Michael Regnier

Biophysical Journal, 2001

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Structure of Cardiac Muscle Troponin C Unexpectedly Reveals a Closed Regulatory Domain

John Putkey

Journal of Biological Chemistry, 1997

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Characteristics of troponin C binding to the myofibrillar thin filament: extraction of troponin C is not random along the length of the thin filament

Marion Greaser

Biophysical Journal, 1997

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Calcium- and myosin-dependent changes in troponin structure during activation of heart muscle

Fang Lou

The Journal of Physiology, 2009

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Calcium binding kinetics of troponin C strongly modulate cooperative activation and tension kinetics in cardiac muscle

Michael Regnier

Journal of Molecular and Cellular Cardiology, 2011

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Troponin-C-mediated calcium-sensitive changes in the conformation of troponin I detected by pyrene excimer fluorescence

Paul Leavis

Journal of Biological Chemistry, 1985

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Cardiac Troponin T Isoforms Affect the Ca2+ Sensitivity of Force Development in the Presence of Slow Skeletal Troponin I

Aldrin Gomes

Journal of Biological Chemistry, 2004

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Switch Action of Troponin on Muscle Thin Filament as Revealed by Spin Labeling and Pulsed EPR

Toshiaki Arata

Journal of Biological Chemistry, 2010

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Calcium- and Magnesium-Dependent Interactions between the C-Terminus of Troponin I and the N-Terminal, Regulatory Domain of Troponin C

Zygmunt Gryczynski

Archives of Biochemistry and Biophysics, 2001

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Tryptophan Mutants of Cardiac Troponin C: 3D Structure, Troponin I Affinity, and in Situ Activity † , ‡

Yin-biao Sun

Biochemistry, 2008

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N-terminal phosphorylation of cardiac troponin-I reduces length-dependent calcium sensitivity of contraction in cardiac muscle

Erik Feest, Michael Regnier

The Journal of Physiology, 2013

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Calcium-dependent Changes in the Flexibility of the Regulatory Domain of Troponin C in the Troponin Complex

Tharin Blumenschein

Journal of Biological Chemistry, 2005

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Charged residue alterations in the inner-core domain and carboxy-terminus of -tropomyosin differentially affect mouse cardiac muscle contractility

D. Zawieja

The Journal of Physiology, 2004

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Phosphorylation of Both Serine Residues in Cardiac Troponin I Is Required to Decrease the Ca[IMAGE] Affinity of Cardiac Troponin C

James d. Potter

Journal of Biological Chemistry, 1995

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Structural basis for the in situ Ca2+ sensitization of cardiac troponin C by positive feedback from force-generating myosin cross-bridges

Yexin Ouyang

Archives of Biochemistry and Biophysics, 2013

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Ca2+-Dependent Photocrosslinking of Tropomyosin Residue 146 to Residues 157–163 in the C-Terminal Domain of Troponin I in Reconstituted Skeletal Muscle Thin Filaments

Sherwin Lehrer

Journal of Molecular Biology, 2009

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Calcium-independent activation of skeletal muscle fibers by a modified form of cardiac troponin C

James Hannon

Biophysical Journal, 1993

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Effects of PKA Phosphorylation of Cardiac Troponin I and Strong Crossbridge on Conformational Transitions of the N-Domain of Cardiac Troponin C in Regulated Thin Filaments

Jayant Jayasundar

Biochemistry, 2007

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Structural Dynamics of Troponin I during Ca2+-Activation of Cardiac Thin Filaments: A Multi-Site Förster Resonance Energy Transfer Study

Joseph Chalovich

PLoS ONE, 2012

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Solution Structure of Calcium-saturated Cardiac Troponin C Bound to Cardiac Troponin I

Paul Rosevear

Journal of Biological Chemistry, 2002

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Cardiac Troponin T Isoforms Affect the Ca2+ Sensitivity and Inhibition of Force Development. INSIGHTS INTO THE ROLE OF TROPONIN T ISOFORMS IN THE HEART

James d. Potter

Journal of Biological Chemistry, 2002

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The Role of the Four Ca2+ Binding Sites of Troponin C in the Regulation of Skeletal Muscle Contraction

James d. Potter

Journal of Biological Chemistry, 1996

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Troponin I in the murine myocardium: influence on length-dependent activation and interfilament spacing

Beata Wolska

Journal of Physiology-london, 2003

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