Time course of changes in in vitro sarcoplasmic reticulum Ca2+-handling and Na+-K+-ATPase activity during repetitive contractions

Pflügers Archiv : European Journal of Physiology Volume 456 Issue 3 Page 601-609 published_at 2008-06
アクセス数 : 930
ダウンロード数 : 165

今月のアクセス数 : 0
今月のダウンロード数 : 0
File
PA_456_601.pdf 218 KB 種類 : fulltext
Title ( eng )
Time course of changes in in vitro sarcoplasmic reticulum Ca2+-handling and Na+-K+-ATPase activity during repetitive contractions
Creator
Mishima Takaaki
Sakamoto Makoto
Sugiyama Minako
Matsunaga Satoshi
Source Title
Pflügers Archiv : European Journal of Physiology
Volume 456
Issue 3
Start Page 601
End Page 609
Abstract
Time-dependent changes in sarcoplasmic reticulum (SR) Ca2+-handling and Na+-K+-ATPase activity, as assessed in vitro, were investigated in the superficial (GS) and deep regions (GD) of rat gastrocnemius muscles undergoing short-term (up to 30 min) electrical stimulation. There was a rapid and progressive loss of force output during the first 5 min of stimulation. For GS, significant depressions (P < 0.05) in SR Ca2+-uptake rate and Ca2+-ATPase activity were observed during only the first 1 min. No further reductions occurred with stimulation time. SR Ca2+-release rate was significantly (P < 0.05) decreased at 3 min. For GD, significant reductions (P <0.05) in Ca2+-uptake rate, Ca2+-release rate and Ca2+-ATPase activity were manifested after 3, 5 and 5 min, respectively. A decay in Na+-K+-ATPase activity was found only in 1-min stimulated GD and 30-min stimulated GS. After 30 min, the depressed functions reverted to resting levels in GD but not in GS. The alterations in any variables examined were not parallel with changes in force output. These results suggest that, at least under the conditions used in this study, in vivo disruptions in cation regulation mediated by vigorous contractile activity would be attributable primarily to events other than structural alterations to the respective proteins.
Keywords
muscle fatigue
structural modification
in vitro measurement
cation regulation protein
oxidative potential
NDC
Biology [ 460 ]
Language
eng
Resource Type journal article
Publisher
Springer-Verlag
Date of Issued 2008-06
Rights
Copyright (c) 2007 Springer-Verlag
Publish Type Author’s Original
Access Rights open access
Source Identifier
The original version is abailable at www.springerlink.com
[NCID] AA00771833
[ISSN] 0031-6768
[DOI] 10.1007/s00424-007-0427-8
[DOI] http://dx.doi.org/10.1007/s00424-007-0427-8 isVersionOf