Key result
The Arg145Gly mutation in human cardiac troponin I increased Ca(2+)-sensitivity but decreased maximum ATPase activity compared to wild-type troponin I in reconstituted myofibrils.
Why the study?
Does the Arg145Gly mutation in human cardiac troponin I alter the ATPase activity of cardiac myofibrils compared to wild-type?
Does the Arg145Gly mutation in human cardiac troponin I alter the ATPase activity of cardiac myofibrils compared to wild-type?
The Arg145Gly mutation in cardiac troponin I impairs its interaction with actin-tropomyosin and troponin C, altering calcium regulation of contraction in familial hypertrophic cardiomyopathy.
Arg145Gly may disrupt Ca2+ regulation in HCM; leaves open clinical translation and therapeutic targeting.
In order to determine the functional consequences of the Arg145Gly mutation in troponin I found in familial hypertrophic cardiomyopathy, human cardiac troponin I and its mutant were expressed in Escherichia coli and purified, and then their effects on the ATPase activity of porcine cardiac myofibrillar preparations from which both troponins C and I had been depleted were examined. Both the wild-type and mutant troponin Is suppressed the ATPase activity of the troponin C.I-depleted myofibrils, but the maximum inhibition caused by mutant troponin I was weaker than that by wild-type troponin I. In the Ca(2)(+)-activation profile of the myofibrillar ATPase activity after reconstitution with both troponins I and C, the Ca(2)(+)-sensitivity with mutant troponin I was higher than that with wild-type troponin I, whereas the maximum level of the ATPase activity with mutant troponin I was lower than that with wild-type troponin I. These findings strongly suggest that the Arg145Gly mutation in human cardiac troponin I modulates the Ca(2)(+)-regulation of contraction by impairing the interaction of troponin I with both actin-tropomyosin and troponin C.
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Takahashi‐Yanaga et al. (2000) studied Familial hypertrophic cardiomyopathy. Arg145Gly mutation in human cardiac troponin I vs. Wild-type troponin I was evaluated on ATPase activity of cardiac myofibrillar preparations. The Arg145Gly mutation in human cardiac troponin I increased Ca(2+)-sensitivity but decreased maximum ATPase activity compared to wild-type troponin I in reconstituted myofibrils.
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