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June 1, 2003Journal of Biological Chemistry45 citationsOpen Access

Functional Importance of the Carboxyl-terminal Region of Striated Muscle Tropomyosin

GJGanapathy JagatheesanUniversity of Maryland, BaltimoreSRSudarsan RajanTemple UniversityNPNatalia PetrashevskayaNational Institute on Aging

Structured PICO

P
Population
Transgenic mice and isolated myofilaments
I
Intervention
Expression of a chimeric tropomyosin (TM) protein (alpha-TM with the 27 terminal amino acids exchanged for the corresponding region in beta-TM)
O
Outcome
Sarcomere performance and calcium sensitivity (rates of contraction and relaxation, time to peak pressure, end diastolic pressure, maximum tension, ATPase rate)surrogate

The tropomyosin isoform-specific carboxyl terminus is a critical determinant of sarcomere performance and calcium sensitivity in the heart.

Abstract

Striated muscle tropomyosin (TM) interacts with actin and the troponin complex to regulate calcium-mediated muscle contraction. Previous work by our laboratory established that alpha- and beta-TM isoforms elicit physiological differences in sarcomeric performance. Heart myofilaments containing beta-TM exhibit an increased sensitivity to calcium that is associated with a decrease in the rate of relaxation and a prolonged time of relaxation. To address whether the carboxyl-terminal, troponin T binding domain of beta-TM is responsible for these physiological alterations, we exchanged the 27 terminal amino acids of alpha-TM (amino acids 258 -284) for the corresponding region in beta-TM. Hearts of transgenic mice that express this chimeric TM protein exhibit significant decreases in their rates of contraction and relaxation when assessed by ex vivo work-performing cardiac analyses. There are increases in the time to peak pressure and a dramatic increase in end diastolic pressure. In myofilaments, this chimeric protein induces depression of maximum tension and ATPase rate, together with a significant decrease in sensitivity to calcium. Our data are the first to demonstrate that the TM isoform-specific carboxyl terminus is a critical determinant of sarcomere performance and calcium sensitivity in both the whole heart and in isolated myofilaments.

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Cite This Study

Jagatheesan et al. (2003) studied this question.

synapsesocial.com/papers/6a240be99e1c90a91c099b24https://doi.org/10.1074/jbc.m303073200
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