Literature DB >> 8935717

Restricted propagation of cytoplasmic Ca2+ oscillation into the nucleus in guinea pig cardiac myocytes as revealed by rapid scanning confocal microscopy and indo-1.

H Tanaka1, T Kawanishi, Y Kato, R Nakamura, K Shigenobu.   

Abstract

Two-dimensional images of cytoplasmic and nuclear free Ca2+ movements in cardiac myocytes were obtained at 67-msec intervals using a Ca(2+)-sensitive fluorescence probe, indo-1, and a rapid scanning confocal laser microscope, Nikon RCM8000. Isolated guinea pig ventricular cells were loaded with indo-1 and stimulated at 0.5 Hz through patch pipettes. On stimulation, nuclear Ca2+ concentration ([Ca2+]) was observed to rise and fall following cytoplasmic [Ca2+] with an obvious delay. Application of isoproterenol significantly increased the peak [Ca2+] on stimulation in both the cytoplasm and nucleus with no substantial change in the basal [Ca2+]; the increase in peak [Ca2+] produced by application of isoproterenol was larger in the cytoplasm than in the nucleus. Under a low [Na+] condition, the basal [Ca2+] was increased from the control values in both the cytoplasm and nucleus; no difference in basal [Ca2+] was observed between the two regions. The increase in peak [Ca2+] by low [Na+] in the cytoplasm was significantly larger than that in the nucleus. When the cells were voltage clamped at 0 mV for 3 sec, no difference in the steady state [Ca2+] was observed between the cytoplasm and nucleus. Nuclear [Ca2+] was also observed to increase following a Ca2+ wave, a local increase in [Ca2+] propagating within the cytoplasm, with a delay. Thus, we demonstrated in isolated myocardial cells that cytoplasmic Ca2+ movements, although hampered by the nuclear envelope, are propagated into the nucleus, a mechanism through which factors affecting cytoplasmic Ca2+ may influence intranuclear events.

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Year:  1996        PMID: 8935717     DOI: 10.1254/jjp.70.235

Source DB:  PubMed          Journal:  Jpn J Pharmacol        ISSN: 0021-5198


  4 in total

1.  Intrasarcomere [Ca2+] gradients and their spatio-temporal relation to Ca2+ sparks in rat cardiomyocytes.

Authors:  H Tanaka; T Sekine; T Kawanishi; R Nakamura; K Shigenobu
Journal:  J Physiol       Date:  1998-04-01       Impact factor: 5.182

2.  Unique excitation-contraction characteristics of mouse myocardium as revealed by SEA0400, a specific inhibitor of Na+-Ca2+ exchanger.

Authors:  Hikaru Tanaka; Iyuki Namekata; Kentaro Takeda; Akihiro Kazama; Yoshiko Shimizu; Rina Moriwaki; Wataru Hirayama; Akira Sato; Toru Kawanishi; Koki Shigenobu
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2005-07-08       Impact factor: 3.000

3.  Calsequestrin accumulation in rough endoplasmic reticulum promotes perinuclear Ca2+ release.

Authors:  Ang Guo; Steven E Cala; Long-Sheng Song
Journal:  J Biol Chem       Date:  2012-03-28       Impact factor: 5.157

4.  Intracellular mechanisms and receptor types for endothelin-1-induced positive and negative inotropy in mouse ventricular myocardium.

Authors:  Iyuki Namekata; Shinpei Fujiki; Yuko Kawakami; Rina Moriwaki; Kentaro Takeda; Toru Kawanishi; Akira Takahara; Koki Shigenobu; Hikaru Tanaka
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2008-01-03       Impact factor: 3.000

  4 in total

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