首页> 美国卫生研究院文献>Biochemical Journal >Neural control of gene expression in skeletal muscle. Calcium-sequestering proteins in developing and chronically stimulated rabbit skeletal muscles.
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Neural control of gene expression in skeletal muscle. Calcium-sequestering proteins in developing and chronically stimulated rabbit skeletal muscles.

机译:骨骼肌中基因表达的神经控制。发育中的和慢性刺激的兔骨骼肌中的钙螯合蛋白。

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摘要

Tissue contents of the sarcoplasmic-reticulum Ca2+-ATPase (Ca2+ +Mg2+-dependent ATPase), of calsequestrin and of parvalbumin were immunochemically quantified in homogenates of fast- and slow-twitch muscles of embryonic, maturing and adult rabbits. Unlike parvalbumin, Ca2+-ATPase and calsequestrin were expressed in embryonic muscles. Presumptive fast-twitch muscles displayed higher contents of these two proteins than did presumptive slow-twitch muscles. Calsequestrin steeply increased before birth and reached adult values in the two muscle types 4 days after birth. The main increase in Ca2+-ATPase occurred during the first 2 weeks after birth. Denervation of postnatal fast- and slow-twitch muscles decreased calsequestrin to amounts typical of embryonic muscle and suppressed further increases of Ca2+-ATPase. Denervation caused slight decreases in Ca2+-ATPase in adult fast-twitch, but not in slow-twitch, muscles, whereas calsequestrin was greatly decreased in both. Chronic low-frequency stimulation induced a rapid decrease in parvalbumin in fast-twitch muscle, which was preceded by a drastic decrease in the amount of its polyadenylated RNA translatable in vitro. Tissue amounts of Ca2+-ATPase and calsequestrin were essentially unaltered up to periods of 52 days stimulation. These results indicate that in fast- and slow-twitch muscles different basal amounts of Ca2+-ATPase and calsequestrin are expressed independent of innervation, but that neuromuscular activity has a modulatory effect. Conversely, the expression of parvalbumin is greatly enhanced by phasic, and drastically decreased by tonic, motor-neuron activity.
机译:肌钙蛋白Ca2 + -ATPase(Ca2 + + Mg2 +依赖性ATPase),钙螯蛋白和小白蛋白的组织含量在胚胎,成年和成年兔的快,慢肌抽动匀浆中进行免疫化学定量。与小白蛋白不同,Ca2 + -ATPase和钙螯合蛋白在胚胎肌肉中表达。推定快肌比推定慢肌表现出更高的这两种蛋白质含量。钙螯合蛋白在出生前急剧增加并在出生后4天在两种肌肉类型中达到成人值。 Ca2 + -ATPase的主要增加发生在出生后的前2周。产后快肌和慢肌的去神经作用使降钙素减少至胚胎肌肉的典型水平,并抑制了Ca2 + -ATPase的进一步增加。去神经引起成年快肌肌肉中Ca2 + -ATPase的轻微降低,但慢肌中肌肉的Ca2 + -ATPase却没有降低,而两者的降钙素都大大降低。慢性低频刺激会引起快速抽搐的肌肉中小白蛋白的迅速减少,随后其体外可翻译的多聚腺苷酸RNA的数量将急剧减少。直到52天的刺激时间,组织中的Ca2 + -ATPase和Calsequestrin的组织量基本没有改变。这些结果表明,在快肌和慢肌中,不同的基础量的Ca2 + -ATPase和Calsequestrin的表达与神经支配无关,但是神经肌肉的活性具有调节作用。相反,小白蛋白的表达在相中被大大增强,而在进补,运动神经元活动中则急剧降低。

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