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Original Article

ELF Magnetic Fields and Protein Changes in Mouse Skeletal Muscle

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Pages 197-207 | Published online: 07 Jul 2009

References

  • Fischman D. A. Myofibrillogenesis and the morphogenesis of skeletal muscle. Myology: Basic and Clinical, A. G. Engel, B. Q. Banker. McGraw-Hill, New York 1986; 5–30
  • Fulton A. B., Isaacs W. B. Titin, a huge, elastic sarcomeric protein with a probable role in morphogenesis. BioEssays 1991; 13: 157–161
  • Trinick J. Understanding the functions of titin and nebulin. FEBS Lett. 1992; 307: 44–48
  • Ervasti J., Campbell K. A role for the dystrophin-glycoprotein complex as a transmembrane linker between laminin and actin. J. Cell Biol. 1993; 122: 809–423
  • Pasternak C., Wong S., Elson E. L. Mechanical function of dystrophin in muscle cells. J. Cell Biol. 1995; 128(3)355–361
  • Jockusch B. M., Isenberg G. Interaction of α-actinin and vinculin with actin: opposite effects on filament network formation. Proc. Natl. Acad. Sci. USA 1981; 78: 3005–3009
  • Senger R., Goldmann W. H. The influence of cations and ionic strength on actin polymerization in the presence/absence of α-actinin. Biochem. Mol. Biol. Int. 1995; 35: 103–109
  • Ohtsuki I., Maruyama K., Ebashi S. Regulatory and cytoskeletal proteins of vertebrate skeletal muscle. Adv. Prot. Chem. 1986; 38: 1–67
  • Stull J. Calmodulin, P. Cohen, C. Nee. Elsevier, New York 1988; 91–122
  • Chan K. J., Graves D. J. Rabbit skeletal muscle phosphorylase kinase. J. Biol. Chem. 1982; 257: 5948–5955
  • Caroni P., Carafoli E. The Ca2+-pumping ATPase of heart sarcolemma. J. Biol. Chem. 1981; 256: 3263–3270
  • Bucking J., Herbst M., Pointer P. The influence of a strong magnetic field on muscular contraction. Radiat. Environ. Biophys. 1974; 11: 79–81
  • El-Gohary M. B., Bassvoni M., Sharat M. L. Effects of magnetic fields on muscle performance abilities. Egypt. J. Biomed. Engng. 1983; 4: 83–93
  • Picazo M. L., De Miguel M. P., Gonzhlez M. J., Royuela M., Fraile B., Paniagua R., Bardasano J. L. Interactions of ELF magnetic fields with mouse skeletal muscle. Electro- Magnetobiol. 1995; 14(3)165–175
  • Picazo M. L., Sanz P., Vallejo D., Alvarez-Ude J. A., Bardasano J. L. Effects of ELF magnetic fields on hematological parameters: an experimental model. Electro- Magnetobiol. 1995; 14(2)75–89
  • Picazo M. L., Leyton V. A., De Miguel M. P., Paniagua R., Bardasano J. L. Effects of chronic exposure to ELF magnetic fields on the reproductive system of female mice. Bioelectrochem. Bioenerg. 1995; 38: 173–177
  • Lacyhulbert A., Wilkins R. C., Hesketh T. R., Metcalfe J. C. No effect of 60 Hz electromagnetic fields on MYC or beta-actin expression in human leukemic cells. Radiat. Res. 1995; 144(1)9–17
  • Saffer J. D., Thurston S. J. Short exposures to 60 Hz magnetic fields do not alter MYC expression in HL60 or Daudi cells. Radiat. Res. 1995; 244(1)18–25
  • Whiting A., Wardale J., Trinick J. Does titin regulate the length of muscle thick filaments?. J. Mol. Biol. 1989; 205: 163–169
  • Patel K., Strong P. N., Dubowitz V., Dunn M. J. Calmodulin-binding profiles for nebulin and dystrophin in human skeletal muscle. FEBS Lett. 1988; 234(2)267–271
  • Jockusch B. M., Veldman H., Griffiths G. W., Van Oost B. A., Jennekens F. G.I. Immunofluoresence microscopy of a myopathy: α-actinin is a major constituent of nemaline rods. Exp. Cell Res. 1980; 127: 409–420
  • Wallgren-Pettersson C., Jasani B., Newman G. R., Morris G. E., Jones S., Singh-Rao S., Clarke A., Virtanen I., Holmberg C., Rapola J. Alpha-actinin in nemaline bodies in congenital nemaline myopathy: immunological confirmation by light and electron microscopy. Neuromusc. Disord. 1995; 5(2)93–104
  • Uchino M., Tokunaga M., Mita S., Uyama E., Ando Y., Teramoto H., Miike T., Ando M. PCR and immunocytochemical analysis of dystrophin-positive fibers in Duchenne muscular dystrophy. J. Neurol. Sci. 1995; 129(1)44–50
  • Van der Ven P. F.M., Jap P. H.K., Laak H. J., Nonaka I., Barth P. G., Sengers R. C.A., Stadhouders A. M., Ramaekers F. C.S. Immunophenotyping of congenital myopathies: disorganization of sarcomeric, cytoskeletal and extracellular matrix proteins. J. Neurol. Sci. 1995; 129: 199–213
  • Root D. D., Wang K. Calmodulin-sensitive interaction of human nebulin fragments with actin and myosin. Biochemistry 1994; 33(42)12581–12591
  • Azanza M. J., del Moral A. Cell membrane biochemistry and neurobiological approach to biomagnetism. Prog. Neurobiol. 1994; 44: 517–601

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