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首页> 外文期刊>The 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:骨骼肌基因表达的神经控制。在开发和长期刺激的兔骨骼肌中钙螯合蛋白

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pTissue 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./p
机译:在胚胎,成熟和成人兔的快速和缓慢肌肉均匀的匀浆中,在胚胎,成熟和成人兔的快速和缓慢肌肉匀浆中进行免疫化学量化的组织含量。与Parvalbumin,Ca2 + -AtPase和Calsequestrin不同于胚胎肌肉。推定快速抽搐的肌肉显示出这两种蛋白质的更高内容,而不是推定的缓慢抽搐肌肉。逃分在出生前急剧增加,并在出生后4天在两种肌肉类型中达到成人值。在出生后的前2周内发生Ca2 + -Atpase的主要增加。后遗症的基因和慢速抽搐肌肉减少了CALSECTESTIN典型的胚胎肌肉的量,并抑制了CA2 + -ATP酶的进一步增加。后果导致成人快速抽搐中的Ca2 + -Atpase略有降低,但在慢慢抽搐,肌肉中,虽然两者兼而有之,Calequestrin大大降低。慢性低频刺激在快速抽搐的肌肉中诱导帕瓦尔白蛋白的快速减少,其在体外可转化的多腺苷酸的RNA的量急剧下降。 CA2 + -ATPase和CALSECTESTRIN的组织量基本上不置于52天刺激的时间。这些结果表明,在快速和缓慢的抽搐肌肉中,不同的Ca2 + -Atpase和Calsequestrin的基础数量无关,而是与支配性无关,但是神经肌肉活性具有调节作用。相反,通过序视大大提高了帕蒿蛋白的表达,通过滋补电动机神经元活性大大降低。

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