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February 2, 2007Circulation73 citationsOpen Access

Cardiac Hypertrophy and Reduced Contractility in Hearts Deficient in the Titin Kinase Region

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JPJun PengKRKaty RaddatzJMJeffery D. Molkentin

Key Points

  • This research examines how the titin kinase region affects heart function and its implications for cardiac health.
  • Developed knockout mice expressing M-line-deficient titin for testing

Structured PICO

Does the titin kinase region regulate cardiac contractile function and hypertrophy in adult mice?

P
Population
Adult mice with induced expression of M-line-deficient titin (knockout model)
I
Intervention
Induction of M-line-deficient titin (knockout of the titin kinase region)
C
Comparator
Control mice (implied)
O
Outcome
Cardiac contractile function, calcium handling, and development of hypertrophy/heart failuresurrogate

The titin kinase region regulates cardiac contractile function and hypertrophy through calcium handling and protein kinase C signal transduction, suggesting a potential therapeutic target for heart failure.

Abstract

BACKGROUND: Titin is a giant protein crucial for the assembly and elasticity of the sarcomere. Recently, titin has been linked to signal transduction through its kinase domain, which has been proposed to sense mechanical load. We developed a knockout in which expression of M-line-deficient titin can be induced in adult mice and investigated the role of the titin kinase region in cardiac function. METHODS AND RESULTS: Isolated heart experiments revealed that in titin M-line-deficient mice, the contractile response to beta-adrenergic agonists and extracellular calcium is reduced. However, the Ca2+ sensitivity and cooperativity of activation of skinned cardiac muscle were unchanged. In knockout mice, calcium transients showed a reduced rate of calcium uptake, and expression analysis showed reduced levels of calmodulin, phospholamban, and SERCA2. Ultimately, knockout mice developed cardiac hypertrophy and heart failure, which involves protein kinase C signal transduction but not the mitogen-activated protein kinase pathway. CONCLUSIONS: The titin kinase region emerges as a regulator of contractile function through effects on calcium handling and hypertrophy through protein kinase signal transduction. These novel functions of titin might provide a rationale for future therapeutic approaches to attenuate or reverse symptoms of heart failure.

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Cite This Study

Peng et al. (2007) studied this question.

synapsesocial.com/papers/69f1a08710fa38abb3d2363dhttps://doi.org/10.1161/circulationaha.106.645499
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