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January 1, 2006International Journal of Biological Sciences35 citationsOpen Access

Dephosphorylation specificities of protein phosphatase for cardiac troponin I, troponin T, and sites within troponin T

NJNathan M. JideamaBCBrian H. CrawfordAHAKM A. Hussain

Key Result

Protein phosphatase 1 differentially dephosphorylates cardiac troponin T preferentially to troponin I and antagonistically restores Ca2+-stimulated Mg2+ATPase activity and Ca2+ sensitivity.

Structured PICO

P
Population
Isolated rat cardiac myofibrils, reconstituted troponin complex, and isolated cardiomyocytes from adult male Sprague-Dawley rat hearts
I
Intervention
Dephosphorylation by protein phosphatase 1 (PP1) in vitro, and in situ phosphorylation with calyculin A (protein phosphatase inhibitor)
C
Comparator
Unphosphorylated control myofibrils, and myelin basic protein (MBP) as a dephosphorylation control
O
Outcome
Dephosphorylation specificities of PP1 for TnI and TnT, Ca2+-stimulated Mg2+ATPase activities, and Ca2+ sensitivitiessurrogate

PP1 acts as a reset regulator of cardiac muscle phosphorylation by antagonistically restoring myofibrillar Mg2+ATPase activity and Ca2+ sensitivity following PKC/PKA phosphorylation.

Abstract

Protein dephosphorylation by protein phosphatase 1 (PP1), acting in concert with protein kinase C (PKC) and protein kinase A (PKA), is a pivotal regulatory mechanism of protein phosphorylation. Isolated rat cardiac myofibrils phosphorylated by PKC/PKA and dephosphorylated by PP1 were used in determining dephosphorylation specificities, Ca(2+)-stimulated Mg(2+)ATPase activities, and Ca(2+) sensitivities. In reconstituted troponin (Tn) complex, PP1 displayed distinct substrate specificity in dephosphorylation of TnT preferentially to TnI, in vitro. In situ phosphorylation of cardiomyocytes with calyculin A, a protein phosphatase inhibitor, resulted in an increase in the phosphorylation stiochiometry of TnT (0.3 to 0.5 (67%)), TnI (2.6 to 3.6 (38%)), and MLC2 (0.4 to 1.7 (325%)). These results further confirmed that though MLC2 is the preferred target substrate for protein phosphatase in the thick filament, the Tn complex (TnI and TnT) from thin filament and C-protein in the thick filament are also protein phosphatase substrates. Our in vitro dephosphorylation experiments revealed that while PP1 differentially dephosphorylated within TnT at multiple sites, TnI was uniformly dephosphorylated. Phosphopeptide maps from the in vitro experiments show that TnT phosphopeptides at spots 4A and 4B are much more resistant to PP1 dephosphorylation than other TnT phosphopeptides. Mg(2+)ATPase assays of myofibrils phosphorylated by PKC/PKA and dephosphorylated by PP1 delineated that while PKC and PKA phosphorylation decreased the Ca(2+)-stimulated Mg(2+)ATPase activities, dephosphorylation antagonistically restored it. PKC and PKA phosphorylation decreased Ca(2+) sensitivity to 3.6 microM and 5.0 microM respectively. However, dephosphorylation restored the Mg(2+)ATPase activity of PKC (99%) and PKA (95%), along with the Ca(2+) sensitivities (3.3 microM and 3.0 microM, respectively).

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Cite This Study

Jideama et al. (2006) studied this question. Protein phosphatase 1 (PP1) vs. Control (unphosphorylated or PKC/PKA phosphorylated without PP1) was evaluated on Ca2+-stimulated Mg2+ATPase activity and Ca2+ sensitivity. Protein phosphatase 1 differentially dephosphorylates cardiac troponin T preferentially to troponin I and antagonistically restores Ca2+-stimulated Mg2+ATPase activity and Ca2+ sensitivity.

synapsesocial.com/papers/6a1596ac79ff98d0de4eda1ahttps://doi.org/10.7150/ijbs.2.1
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