IP3 dependent Ca2+ signals in muscle cells are involved in regulation of gene expression
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Jaimovich Pérez, Enrique
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IP3 dependent Ca2+ signals in muscle cells are involved in regulation of gene expression
Abstract
Potassium depolarization of cultured muscle cells was employed to study cellular responses linked to calcium signaling. Events occurring after depolarization include i) A transient increase of the IP3 mass (2-10s); ii) A slow calcium transient (5 to 25s) that propagates as a low concentration wave along the myotube showing a distinct calcium transient at the level of cell nuclei. Due to the presence of IP3 receptors both in the SR (A-band region) and in the nuclear envelope, these two events appear to be related; iii) Phosphorylation of mitogen activated kinases (ERK 1/2) and of the transcription factor CREB (30 s-10 min), as well as expression of the early genes c-fos, c-jun and egr-1 mRNA (5-15 min). Several independent pieces of evidence, including results obtained using inhibitors specific for individual steps, allowed us to connect these in a sequential manner. As the same type of signaling cascade can be triggered by oxidants, neurotransmitters and hormones, the ensemble of resul
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URI: https://repositorio.uchile.cl/handle/2250/163470
DOI: 10.4067/S0716-97602002000200010
ISSN: 07169760
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Biological Research, Volumen 35, Issue 2, 2018, Pages 195-202
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