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      Developmental changes of cardiac and slow skeletal muscle troponin T expression in chicken cardiac and skeletal muscles.

      Zoological science
      Animals, Chick Embryo, DNA, Antisense, genetics, Electrophoresis, Polyacrylamide Gel, Embryonic and Fetal Development, physiology, Gene Expression Regulation, Developmental, Heart, embryology, Immunoblotting, Isoelectric Focusing, Muscle, Skeletal, metabolism, Myocardium, Protein Isoforms, biosynthesis, chemistry, Troponin T

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          Abstract

          Numerous troponin T (TnT) isoforms are produced by alternative splicing from three genes characteristic of cardiac, fast skeletal, and slow skeletal muscles. Apart from the developmental transition of fast skeletal muscle TnT isoforms, switching of TnT expression during muscle development is poorly understood. In this study, we investigated precisely and comprehensively developmental changes in chicken cardiac and slow skeletal muscle TnT isoforms by two-dimensional gel electrophoresis and immunoblotting with specific antisera. Four major isoforms composed of two each of higher and lower molecular weights were found in cardiac TnT (cTnT). Expression of cTnT changed from high- to low-molecular-weight isoforms during cardiac muscle development. On the other hand, such a transition was not found and only high-molecular-weight isoforms were expressed in the early stages of chicken skeletal muscle development. Two major and three minor isoforms of slow skeletal muscle TnT (sTnT), three of which were newly found in this study, were expressed in chicken skeletal muscles. The major sTnT isoforms were commonly detected throughout development in slow and mixed skeletal muscles, and at developmental stages until hatching-out in fast skeletal muscles. The expression of minor sTnT isoforms varied from muscle to muscle and during development.

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