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Translational control of tropomyosin expression in vertebrate hearts

  • Dipak K. Dube*
  • , Matthew D. McLean
  • , Syamalima Dube
  • , Bernard J. Poiesz
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

The tropomyosin (TM) gene family produces a set of related TM proteins with important functions in striated and smooth muscle, and nonmuscle cells. In vertebrate striated muscle, the thin filament consists largely of actin, TM, the troponin (Tn) complex (Tn-I, Tn-C and Tn-T), and tropomodulin (Tmod) and is responsible for mediating Ca2+ control of muscle contraction and relaxation. There are four known genes (designated as TPM1, TPM2, TPM3, and TPM4) for TM in vertebrates. The four TM genes generate a multitude of tissue- and developmental-specific isoforms through the use of different promoters, alternative mRNA splicing, different 3′-end mRNA processing and tissue-specific translational control. In this review, we have focused mainly on the regulation of TM expression in striated muscles, primarily in vertebrate hearts with special emphasis on translational control using mouse and Mexican axolotl animal models. Anat Rec, 297:1585-1595, 2014.

Original languageEnglish
Pages (from-to)1585-1595
Number of pages11
JournalAnatomical Record
Volume297
Issue number9
DOIs
StatePublished - Sep 2014

Keywords

  • Mexican axolotl
  • Mouse
  • Regulation
  • Translation
  • Tropomyosin

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