Pages that link to "Q35056950"
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The following pages link to Myosin head orientation: a structural determinant for the Frank-Starling relationship (Q35056950):
Displaying 35 items.
- The cardiac-specific N-terminal region of troponin I positions the regulatory domain of troponin C (Q28248504) (← links)
- Perturbed length-dependent activation in human hypertrophic cardiomyopathy with missense sarcomeric gene mutations (Q28287468) (← links)
- In situ time-resolved FRET reveals effects of sarcomere length on cardiac thin-filament activation (Q34031024) (← links)
- Deletion of the titin N2B region accelerates myofibrillar force development but does not alter relaxation kinetics (Q34112695) (← links)
- Impact of familial hypertrophic cardiomyopathy-linked mutations in the NH2 terminus of the RLC on β-myosin cross-bridge mechanics (Q34726797) (← links)
- Familial hypertrophic cardiomyopathy related cardiac troponin C L29Q mutation alters length-dependent activation and functional effects of phosphomimetic troponin I* (Q35048381) (← links)
- The interaction of Ca2+ with sarcomeric proteins: role in function and dysfunction of the heart (Q35906404) (← links)
- Magnitude of length-dependent changes in contractile properties varies with titin isoform in rat ventricles (Q35964925) (← links)
- Cardiac myosin binding protein-C: redefining its structure and function (Q36030150) (← links)
- Myofilament length-dependent activation develops within 5 ms in guinea-pig myocardium (Q36071916) (← links)
- Deletion of 1-43 amino acids in cardiac myosin essential light chain blunts length dependency of Ca(2+) sensitivity and cross-bridge detachment kinetics (Q36528078) (← links)
- Titin strain contributes to the Frank-Starling law of the heart by structural rearrangements of both thin- and thick-filament proteins (Q36646689) (← links)
- Calcium sensitivity and myofilament lattice structure in titin N2B KO mice (Q36794638) (← links)
- Titin stiffness modifies the force-generating region of muscle sarcomeres (Q36799692) (← links)
- Myosin light chain phosphorylation enhances contraction of heart muscle via structural changes in both thick and thin filaments (Q36957331) (← links)
- Sarcomere length dependent effects on the interaction between cTnC and cTnI in skinned papillary muscle strips (Q36984109) (← links)
- Myosin heads are displaced from actin filaments in the in situ beating rat heart in early diabetes (Q37409696) (← links)
- Structure, interactions and function of the N-terminus of cardiac myosin binding protein C (MyBP-C): who does what, with what, and to whom? (Q38004917) (← links)
- Myosin MgADP Release Rate Decreases as Sarcomere Length Increases in Skinned Rat Soleus Muscle Fibers. (Q39223604) (← links)
- Historical perspective on heart function: the Frank-Starling Law. (Q39310653) (← links)
- The Frank-Starling Law: a jigsaw of titin proportions (Q39389993) (← links)
- Distinct contributions of the thin and thick filaments to length-dependent activation in heart muscle (Q41957734) (← links)
- Cardiac muscle mechanics: Sarcomere length matters (Q42223914) (← links)
- Impact of titin isoform on length dependent activation and cross-bridge cycling kinetics in rat skeletal muscle (Q42404235) (← links)
- Cross-talk, cross-bridges, and calcium activation of cardiac contraction. (Q42783964) (← links)
- Update on innovative initiatives for the American Journal of Physiology-Heart and Circulatory Physiology (Q44132620) (← links)
- N-terminal phosphorylation of cardiac troponin-I reduces length-dependent calcium sensitivity of contraction in cardiac muscle (Q44281385) (← links)
- Altered myofilament structure and function in dogs with Duchenne muscular dystrophy cardiomyopathy (Q47221649) (← links)
- Functional significance of C-terminal mobile domain of cardiac troponin I. (Q47621571) (← links)
- Left ventricular strain modifications after maximal exercise in athletes: a speckle tracking study (Q48696680) (← links)
- Role of the C-terminus mobile domain of cardiac troponin I in the regulation of thin filament activation in skinned papillary muscle strips. (Q53828295) (← links)
- Inotropic interventions do not change the resting state of myosin motors during cardiac diastole (Q60919762) (← links)
- The Effects of Mechanical Preload on Transmural Differences in Mechano-Calcium-Electric Feedback in Single Cardiomyocytes: Experiments and Mathematical Models (Q91635515) (← links)
- End-diastolic force pre-activates cardiomyocytes and determines contractile force: role of titin and calcium (Q91954763) (← links)
- Length-Dependent Activation of Contractility and Ca-Transient Kinetics in Auxotonically Contracting Isolated Rat Ventricular Cardiomyocytes (Q92535883) (← links)