AI Article Synopsis

  • Troponin I (TnI) is crucial for heart contraction and relaxation, with its phosphorylation at Ser-23/24 being important for heart function regulation.
  • * Research on mice with TnI mutated at Ser-23/24 showed that without phosphorylation, there were notable impairments in heart function under both normal and stressed conditions.
  • * Mice lacking TnI Ser-23/24 phosphorylation exhibited worse heart performance, less ability to respond to increased heart rates, and a poorer response to stress, indicating the significance of this phosphorylation site for cardiac health.

Article Abstract

Troponin I (TnI) is a key regulator of cardiac contraction and relaxation with TnI Ser-23/24 phosphorylation serving as a myofilament mechanism to modulate cardiac function. Basal cardiac TnI Ser-23/24 phosphorylation is high such that both increased and decreased TnI phosphorylation may modulate cardiac function. While the effects of increasing TnI Ser-23/24 phosphorylation on heart function are well established, the effects of decreasing TnI Ser-23/24 phosphorylation are not clear. To understand the in vivo role of decreased TnI Ser-23/24 phosphorylation, mice expressing TnI with Ser-23/24 mutated to alanine (TnI S23/24A) that lack the ability to be phosphorylated at these residues were subjected to echocardiography and pressure-volume hemodynamic measurements in the absence or presence of physiological (pacing increasing heart rate or adrenergic stimulation) or pathological (transverse aortic constriction (TAC)) stress. In the absence of pathological stress, the lack of TnI Ser-23/24 phosphorylation impaired systolic and diastolic function. TnI S23/24A mice also had an impaired systolic and diastolic response upon stimulation increased heart rate and an impaired adrenergic response upon dobutamine infusion. Following pathological cardiac stress induced by TAC, TnI S23/24A mice had a greater increase in ventricular mass, worse diastolic function, and impaired systolic and diastolic function upon increasing heart rate. These findings demonstrate that mice lacking the ability to phosphorylate TnI at Ser-23/24 have impaired in vivo systolic and diastolic cardiac function, a blunted cardiac reserve and a worse response to pathological stress supporting decreased TnI Ser23/24 phosphorylation is a modulator of these processes in vivo.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10074981PMC
http://dx.doi.org/10.1016/j.yjmcc.2023.01.010DOI Listing

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