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June 5, 2014AJP Cell Physiology9 citationsOpen Access

A dominantly negative mutation in cardiac troponin I at the interface with troponin T causes early remodeling in ventricular cardiomyocytes

HWHongguang WeiJJJian‐Ping Jin

Structured PICO

Does the cTnI-K118C mutation alter cellular phenotypes and cause early remodeling in ventricular cardiomyocytes?

P
Population
Transgenic mouse cardiomyocytes expressing the cTnI-K118C mutation and wild-type controls
I
Intervention
Expression of the dominantly negative cTnI-K118C mutation
C
Comparator
Wild-type controls
O
Outcome
Cellular phenotypes including amplitude of contraction, velocities of shortening and relengthening, intracellular Ca(2+) transient, β-adrenergic response, resting length, sarcomere length, nucleation, and gene expressionsurrogate

The dominantly negative cTnI-K118C mutation impairs cardiomyocyte contractile function and calcium handling, and induces early cellular remodeling potentially mediated by increased LIFR-β signaling.

Abstract

We previously reported a point mutation substituting Cys for Arg(111) in the highly conserved troponin T (TnT)-contacting helix of cardiac troponin I (cTnI) in wild turkey hearts (Biesiadecki et al. J Biol Chem 279: 13825-13832, 2004). This dominantly negative TnI-TnT interface mutation decreases the binding affinity of cTnI for TnT, impairs diastolic function, and blunts the β-adrenergic response of cardiac muscle (Wei et al. J Biol Chem 285: 27806-27816, 2010). Here we further investigate cellular phenotypes of transgenic mouse cardiomyocytes expressing the equivalent mutation cTnI-K118C. Functional studies were performed on single adult cardiomyocytes after recovery in short-term culture from isolation stress. The amplitude of contraction and the velocities of shortening and relengthening were lower in cTnI-K118C cardiomyocytes than wild-type controls. The intracellular Ca(2+) transient was slower in cTnI-K118C cardiomyocytes than wild-type cells. cTnI-K118C cardiomyocytes also showed a weaker β-adrenergic response. The resting length of cTnI-K118C cardiomyocytes was significantly greater than that of age-matched wild-type cells, with no difference in cell width. The resting sarcomere was not longer, but slightly shorter, in cTnI-K118C cardiomyocytes than wild-type cells, indicating longitudinal addition of sarcomeres. More tri- and quadrinuclei cardiomyocytes were found in TnI-K118C than wild-type hearts, suggesting increased nuclear divisions. Whole-genome mRNA array and Western blots detected an increased expression of leukemia inhibitory factor receptor-β in the hearts of 2-mo-old cTnI-K118C mice, suggesting a signaling pathway responsible for the potent effect of cTnI-K118C mutation on early remodeling in cardiomyocytes.

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Cite This Study

Wei et al. (2014) studied this question.

synapsesocial.com/papers/6a19639bc3e09444f388cd59https://doi.org/10.1152/ajpcell.00053.2014
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