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March 1, 1987Journal of Biological Chemistry165 citationsOpen Access

Isolation and functional comparison of bovine cardiac troponin T isoforms.

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LTLarry S. TobacmanRLR. Lee

Key Result

The smaller bovine cardiac troponin T isoform shifted the Ca2+-activation curve 0.1-0.15 pCa units to the left and increased the MgATPase rate by 50% at 10(-6) M Ca2+ compared to the larger isoform.

Structured PICO

P
Population
Bovine cardiac troponin T isoforms
I
Intervention
Smaller bovine cardiac troponin T isoform
C
Comparator
Larger bovine cardiac troponin T isoform
O
Outcome
Thin filament-activated MgATPase rate and Ca2+ sensitivitysurrogate

The variable region of troponin T influences the overall response of the thin filament to Ca2+, suggesting that mRNA splicing may modulate cardiac muscle function.

Abstract

We report on the isolation of two bovine cardiac troponin isoforms which differ in sequence near the amino terminus of troponin T (Risnik, V. V., Verin, A. D., and Gusev, N. B. (1985) Biochem. J. 225, 549-552). The isoforms were isolated by direct separation on DEAE-cellulose and were also obtained by reconstitution of urea-dissociated subunits. The two isoforms were compared for their effects on processes involving interactions of troponin with tropomyosin and actin. The two isoforms had similar abilities to promote tropomyosin polymerization. They allowed equal potentiation, by high concentration of myosin subfragment 1, of the thin filament-activated MgATPase rate. In the presence of lower concentrations of myosin subfragment 1, the MgATPase rate was 96% sensitive to Ca2+, regardless of which troponin isoform was present. The Ca2+ concentration required to activate the MgATPase rate was similar but not identical for thin filaments containing one isoform or the other. In the presence of the smaller isoform, the Ca2+-activation curve is shifted 0.1 to 0.15 pCa units to the left. At 10(-6) M Ca2+ the MgATPase rate is 50% greater when the smaller troponin T isoform is present than when the larger is present. These results indicate that the variable region of troponin T influences the overall response of the thin filament to Ca2+, and raises the possibility that regulation of this region by mRNA splicing may modulate muscle function.

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Cite This Study

Tobacman et al. (1987) studied this question. Smaller bovine cardiac troponin T isoform vs. Larger bovine cardiac troponin T isoform was evaluated on MgATPase rate activation by Ca2+. The smaller bovine cardiac troponin T isoform shifted the Ca2+-activation curve 0.1-0.15 pCa units to the left and increased the MgATPase rate by 50% at 10(-6) M Ca2+ compared to the larger isoform.

synapsesocial.com/papers/6a0a2a42a9b588564434ceedhttps://doi.org/10.1016/s0021-9258(18)61311-0
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