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鲫鱼脑中糖原含量和钠钾ATP酶活性的季节性变化

Seasonal changes in glycogen content and Na+-K+-ATPase activity in the brain of crucian carp.

作者信息

Vornanen Matti, Paajanen Vesa

机构信息

Univ. of Joensuu, Dept. of Biology, P.O. Box 111, 80101 Joensuu, Finland.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2006 Nov;291(5):R1482-9. doi: 10.1152/ajpregu.00172.2006. Epub 2006 Jun 1.

Abstract

Changes in the number of Na+-K+-ATPase alpha-subunits, Na+-K+-ATPase activity and glycogen content of the crucian carp (Carassius carassius) brain were examined to elucidate relative roles of energy demand and supply in adaptation to seasonal anoxia. Fish were collected monthly around the year from the wild for immediate laboratory assays. Equilibrium dissociation constant and Hill coefficient of [3H]ouabain binding to brain homogenates were 12.87+/-2.86 nM and -1.18+/-0.07 in June and 11.93+/-2.81 nM and -1.17+/-0.06 in February (P>0.05), respectively, suggesting little changes in Na+-K+-ATPase alpha-subunit composition of the brain between summer and winter. The number of [3H]ouabain binding sites and Na-K-ATPase activity varied seasonally (P<0.001) but did not show clear connection to seasonal changes in oxygen content of the fish habitat. Six weeks' exposure of fish to anoxia in the laboratory did not affect Na+-K+-ATPase activity (P>0.05) confirming the anoxia resistance of the carp brain Na pump. Although anoxia did not suppress the Na pump, direct Q10 effect on Na+-K+-ATPase at low temperatures resulted in 10 times lower catalytic activity in winter than in summer. Brain glycogen content showed clear seasonal cycling with the peak value of 203.7+/-16.1 microM/g in February and a 15 times lower minimum (12.9+/-1.2) in July. In winter glycogen stores are 15 times larger and ATP requirements of Na+-K+-ATPase at least 10 times less than in summer. Accordingly, brain glycogen stores are sufficient to fuel brain function for about 8 min in summer and 16 h in winter, meaning about 150-fold extension of brain anoxia tolerance by seasonal changes in energy supply-demand ratio.

摘要

为阐明能量需求与供应在适应季节性缺氧中的相对作用,研究了鲫鱼(Carassius carassius)脑内钠钾ATP酶α亚基数量、钠钾ATP酶活性及糖原含量的变化。全年每月从野外采集鱼类用于即时实验室分析。6月时,[³H]哇巴因与脑匀浆结合的平衡解离常数和希尔系数分别为12.87±2.86 nM和 -1.18±0.07,2月时分别为11.93±2.81 nM和 -1.17±0.06(P>0.05),这表明夏季和冬季脑内钠钾ATP酶α亚基组成变化不大。[³H]哇巴因结合位点数量和钠钾ATP酶活性随季节变化(P<0.001),但与鱼类栖息地氧含量的季节性变化无明显关联。在实验室中让鱼暴露于缺氧环境六周并未影响钠钾ATP酶活性(P>0.05),证实了鲤鱼脑钠泵的抗缺氧能力。尽管缺氧并未抑制钠泵,但低温对钠钾ATP酶的直接Q10效应导致冬季催化活性比夏季低10倍。脑糖原含量呈现明显的季节性循环,2月峰值为203.7±16.1 μmol/g,7月最低值比峰值低15倍(12.9±1.2)。冬季糖原储备比夏季大15倍,钠钾ATP酶的ATP需求量至少比夏季少10倍。因此,脑糖原储备在夏季足以维持脑功能约8分钟,在冬季则为16小时,这意味着能量供需比的季节性变化使脑缺氧耐受能力延长了约150倍。

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