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蛋白激酶激活作为肾上腺髓质中酪氨酸3-单加氧酶跨突触诱导的早期事件。

Protein kinase activation as an early event in the trans-synaptic induction of tyrosine 3-monooxygenase in adrenal medulla.

作者信息

Guidotti A, Kurosawa A, Chuang D M, Costa E

出版信息

Proc Natl Acad Sci U S A. 1975 Mar;72(3):1152-6. doi: 10.1073/pnas.72.3.1152.

Abstract

An increase of cAMP/cGMP concentration ratio is the earliest stimulus-coupled biochemical change that has been measured in the adrenal medulla during the trans-synaptic induction of tyrosine 3-monooxygenase [EC 1.14.16.2; L-tyrosine, tetrahydropteridine:oxygen oxidoreductase (3-hydroxylating)]. In adrenal medulla of rats receiving reserpine alone (16 mumol/kg intraperitoneally) or reserpine and propranolol (40 mumol/kg intraperitoneally 30 min before reserpine), or exposed to 4 degrees for 4 hr, the extent and duration of the increase of the cAMP/cGMP concentration ratio exceeds the critical value that is required to activate the protein kinases (EC 2.7.1.37; ATP:protein phosphotransferase). Gel filtration experiments indicate that during this activation, the catalytic subunit of the protein kinase (low-molecular-weight enzyme) is released from the holoenzyme. The activation of protein kinase lasts longer than the increase in the cAMP/cGMP concentration ratio and appears to be an obligatory early event that mediates the increase of tyrosine monooxygenase synthesis. The trans-synaptic induction of the monooxygenase in adrenal medulla appears to be due to an increased synthesis of the enzyme;the rate for monooxygenase degradation is proportional to the number of enzyme molecules that are present at various stages of the induction process.

摘要

环磷酸腺苷/环磷酸鸟苷浓度比值的升高是在肾上腺髓质中经突触诱导酪氨酸3-单加氧酶[EC 1.14.16.2;L-酪氨酸,四氢蝶啶:氧氧化还原酶(3-羟化)]过程中最早检测到的与刺激偶联的生化变化。在单独接受利血平(16 μmol/kg腹腔注射)或利血平和普萘洛尔(在利血平前30分钟腹腔注射40 μmol/kg)的大鼠肾上腺髓质中,或在4℃暴露4小时的大鼠肾上腺髓质中,环磷酸腺苷/环磷酸鸟苷浓度比值升高的程度和持续时间超过了激活蛋白激酶(EC 2.7.1.37;ATP:蛋白质磷酸转移酶)所需的临界值。凝胶过滤实验表明,在这种激活过程中,蛋白激酶的催化亚基(低分子量酶)从全酶中释放出来。蛋白激酶的激活持续时间比环磷酸腺苷/环磷酸鸟苷浓度比值的升高持续时间更长,并且似乎是介导酪氨酸单加氧酶合成增加的一个必不可少的早期事件。肾上腺髓质中单加氧酶的经突触诱导似乎是由于该酶合成增加所致;单加氧酶的降解速率与诱导过程各个阶段存在的酶分子数量成正比。

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