Protein Kinase A Phosphorylates Cardiac-Specific N2B Domain of Titin and Reduces Passive Tension in Rat Cardiac Myocytes
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چکیده
b-Adrenergic stimulation of cardiac muscle activates protein kinase A (PKA), which is known to phosphorylate proteins on the thin and thick filaments of the sarcomere. Cardiac muscle sarcomeres contain a third filament system composed of titin, and in this study, we demonstrate that titin is also phosphorylated by the b-adrenergic pathway. Titin phosphorylation was observed after b-receptor stimulation of intact cardiac myocytes and incubation of skinned cardiac myocytes with PKA. Mechanical experiments with isolated myocytes revealed that PKA significantly reduces passive tension. In vitro phosphorylation of recombinant titin fragments and immunoelectron microscopy suggest that PKA targets a subdomain of the elastic segment of titin, referred to as the N2B spring element. The N2B spring element is expressed only in cardiac titins, in which it plays an important role in determining the level of passive tension. Because titin-based passive tension is a determinant of diastolic function, these results suggest that titin phosphorylation may modulate cardiac function in vivo. (Circ Res. 2002;90:●●●-●●●.)
منابع مشابه
Protein kinase A phosphorylates titin's cardiac-specific N2B domain and reduces passive tension in rat cardiac myocytes.
beta-Adrenergic stimulation of cardiac muscle activates protein kinase A (PKA), which is known to phosphorylate proteins on the thin and thick filaments of the sarcomere. Cardiac muscle sarcomeres contain a third filament system composed of titin, and here we demonstrate that titin is also phosphorylated by the beta-adrenergic pathway. Titin phosphorylation was observed after beta-receptor stim...
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Question: How does phosphorylation of titan affect cardiac function? Background: Sarcomeres are the repeating contractile subunits from which the myofibrils of striated muscle are built. Titin is a large sarcomeric protein involved in muscle elasticity and myofibril scaffolding, which provides passive tension to muscle based on physiological demands. In mammalian cardiac tissue, there are two i...
متن کاملTitin isoform expression in normal and hypertensive myocardium.
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Krüger, Martina, Thomas Kohl, and Wolfgang A. Linke. Developmental changes in passive stiffness and myofilament Ca sensitivity due to titin and troponin-I isoform switching are not critically triggered by birth. Am J Physiol Heart Circ Physiol 291: H496–H506, 2006. First published May 5, 2006; doi:10.1152/ajpheart.00114.2006.—The giant protein titin, a major contributor to myocardial mechanics,...
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