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Rotational Dynamics of Actin-Bound Myosin Heads in Active Myofibrils
Christopher L. Berger
,
David D Thomas
Structural Biology and Biophysics (TMED)
Research output
:
Contribution to journal
›
Article
›
peer-review
37
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Scopus citations
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Dive into the research topics of 'Rotational Dynamics of Actin-Bound Myosin Heads in Active Myofibrils'. Together they form a unique fingerprint.
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Keyphrases
Actin
100%
Myosin Head
100%
Rotational Dynamics
100%
Myofibril
100%
Rotational Motion
44%
Transfer Electrons
33%
Saturation Transfer
33%
Carbodiimide
22%
Electron Paramagnetic Resonance
22%
Ionic Strength
22%
Spin Label
22%
Cross-bridge
22%
Dimethylamino
22%
Myofibrillar
22%
Ethyl-3
22%
Low Ionic Strength
22%
Propyl
22%
Molecular Mechanism
11%
Muscle Fiber
11%
Photolysis
11%
Steady State
11%
Physiological Condition
11%
ATP Synthase
11%
Caged ATP
11%
Steady-state ATPase
11%
Cross-linked
11%
Actomyosin
11%
Maleimide
11%
Binding Assay
11%
Work-as-done
11%
Resonance Experiment
11%
Electron Paramagnetic Resonance Spectra
11%
Nitroxide
11%
Buffer Conditions
11%
Physiological Buffers
11%
Muscle Contraction Mode
11%
Microsecond Timescale
11%
Sub-millisecond
11%
Biochemistry, Genetics and Molecular Biology
Myosin Head
100%
Actin
100%
Myofibril
100%
Motion
55%
Ionic Strength
44%
Saturation Transfer
33%
Steady State
22%
Biochemistry
11%
Photolysis
11%
Muscle Contraction
11%
ATPase
11%
Adenosine Triphosphate
11%
Myosin ATPase
11%
Molecular Mechanism
11%
Chemistry
Myosin
100%
Actin
100%
Ionic Strength
50%
EPR Spectroscopy
37%
Saturation Transfer
37%
Ethyl
25%
Carbodiimide
25%
Biochemistry
12%
Buffer Solution
12%
ATP
12%
Relaxation
12%
Photolysis
12%
Maleimide
12%
proteolytic
12%