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April 1, 1989Proceedings of the National Academy of Sciences289 citationsOpen Access

Regulation of myocardial Ca2+-ATPase and phospholamban mRNA expression in response to pressure overload and thyroid hormone.

RNR NagaiÁZÁngel Zarain‐HerzbergCBChristopher J. Brandl

Key Result

Pressure overload decreased rabbit myocardial SR Ca2+-ATPase mRNA to 34% of control at 1 week, while thyroid hormone treatment increased it to 167% at 3 days.

Key Points

  • This research aims to investigate how pressure overload and thyroid hormone affect the expression of Ca2+-ATPase and phospholamban mRNA in the heart.
  • Characterized rabbit cardiac Ca2+-ATPase by molecular cloning and ribonuclease A mapping analysis.
  • Quantified mRNA levels of Ca2+-ATPase and phospholamban in response to pressure overload and thyroid hormone treatment.
  • Compared mRNA expression levels in hypothyroid and hyperthyroid conditions.
  • The slow-twitch Ca2+-ATPase mRNA level decreased to 34% of control after 1 week of pressure overload.
  • After 3 days of thyroid hormone treatment, Ca2+-ATPase mRNA levels increased to 167% of control.
  • Phospholamban mRNA levels decreased to 36% after 1 week of pressure overload, while hypothyroidism showed minimal effect.

Structured PICO

How does myocardial Ca2+-ATPase and phospholamban mRNA expression change in response to pressure overload and thyroid hormone manipulation?

P
Population
59 New Zealand White rabbits (8 to 16 weeks old) used as models for pressure overload hypertrophy, thyrotoxic cardiac hypertrophy, and hypothyroidism.
I
Intervention
Pressure overload (60% constriction of the pulmonary artery for 1 or 4 weeks), thyroxine (T4) injection (200 µg/kg for 3 days or 1 week), or propylthiouracil (PTU) in drinking water (0.8 g/liter for 2 or 4 weeks).
C
Comparator
Sham-operated animals (for pressure overload) or age-matched untreated controls (for thyroxine and PTU treatments).
O
Outcome
Steady-state mRNA levels of SR Ca2+-ATPase and phospholamban.surrogate

The expression of SR Ca2+-ATPase and phospholamban mRNA is not coordinately regulated during myocardial adaptation to pressure overload and thyroid hormone stress, indicating distinct genetic control mechanisms.

Abstract

The sarcoplasmic reticulum (SR) and the contractile protein myosin play an important role in myocardial performance. Both of these systems exhibit plasticity--i.e., quantitative and/or qualitative reorganization during development and in response to stress. Recent studies indicate that SR Ca2+ uptake function is altered in adaptive cardiac hypertrophy and failure. The molecular basis (genetic and phenotypic) for these changes is not understood. In an effort to determine the underlying causes of these changes, we characterized the rabbit cardiac Ca2+-ATPase phenotype by molecular cloning and ribonuclease A mapping analysis. Our results show that the heart muscle expresses only the slow-twitch SR Ca2+-ATPase isoform. Second, we quantitated the steady-state mRNA levels of two major SR Ca2+ regulatory proteins, the Ca2+-ATPase and phospholamban, to see whether changes in mRNA content might provide insight into the basis for functional modification in the SR of hypertrophied hearts. In response to pressure overload hypertrophy, the relative level of the slow-twitch/cardiac SR Ca2+-ATPase mRNA was decreased to 34% of control at 1 week. The relative Ca2+-ATPase mRNA level increased to 167% of control after 3 days of treatment with thyroid hormone. In contrast, in hypothyroid animals, the relative Ca2+-ATPase mRNA level decreased to 51% of control at 2 weeks. The relative level of phospholamban mRNA was decreased to 36% in 1-week pressure overload. Hyperthyroidism induced a decrease to 61% in the phospholamban mRNA level after 3 days of treatment, while hypothyroidism had virtually no effect on phospholamban mRNA levels. These data indicate that the expression of SR Ca2+-ATPase and phospholamban mRNA may not be coordinately regulated during myocardial adaptation to different physiological conditions.

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Cite This Study

Nagai et al. (1989) studied Myocardial hypertrophy and thyroid dysfunction. Pressure overload and thyroid hormone treatment vs. Control was evaluated on Steady-state mRNA levels of SR Ca2+-ATPase and phospholamban. Pressure overload decreased rabbit myocardial SR Ca2+-ATPase mRNA to 34% of control at 1 week, while thyroid hormone treatment increased it to 167% at 3 days.

synapsesocial.com/papers/6a0d514568ddba849a09b28fhttps://doi.org/10.1073/pnas.86.8.2966
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