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首页> 外文期刊>The biochemical journal >Inhibition of foetal pulmonary choline-phosphate cytidylyltransferase under conditions favouring protein phosphorylation
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Inhibition of foetal pulmonary choline-phosphate cytidylyltransferase under conditions favouring protein phosphorylation

机译:抑制胎儿肺胆碱 - 磷酸胞嘧啶细胞酰基转移酶的抑制蛋白质磷酸化的条件下

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pCholine-phosphate cytidylyltransferase (EC 2.7.7.15) activity from 25- and 29-day-foetal rabbit lungs was inhibited in both the cytosolic and the microsomal fractions by preincubation with MgATP. The inhibition of the cytosolic enzyme was greater when measured with added phosphatidylglycerol (PG) than without (78-89% versus 50-55%), whereas the inhibition of the microsomal enzyme did not exhibit this distinction (66-72% versus 60-70%). When preincubated with the buffer alone, the cytosolic enzyme was activated to a greater extent by added PG than was the microsomal enzyme (13-14-fold versus 2-3-fold). However, after preincubation with MgATP, the cytosolic enzyme was activated to a smaller extent by added PG (3-6-fold). The inhibition of the enzyme by MgATP required a preincubation and was absent when ADP or AMP was substituted for ATP. Moreover, ATP analogues such as adenosine 5′-[beta, gamma-methylene]triphosphate and adenosine 5′-[γ-thio]triphosphate also failed to inhibit the enzyme when substituted for ATP in the preincubation. The inhibition by MgATP was not affected by including cyclic AMP in the preincubation, but Ca2+ ions alone or plus diacylglycerol in the preincubation increased the inhibition slightly. The inhibition was abolished by including an inhibitor of cyclic-AMP-dependent protein kinase in the preincubation. These observations, taken collectively, point to the inhibition of foetal pulmonary cytidylyltransferase through the phosphorylation of a protein and suggest that this key enzyme in lung surfactant production may be regulated through this mechanism./p
机译:通过预孵育与MgATP,在胞质溶胶和微粒体级分中抑制了来自25-和29天 - 胎儿兔肺的胆碱 - 磷酸胆酰基转移酶(EC 2.7.7.15)活性。当用添加的磷脂酰甘油(PG)测量而不是缺乏(78-89%而与50-55%)测量时,抑制胞质酶更大,而抑制微粒体酶的抑制没有表现出这种区别(66-72%,而60- 70%)。当用缓冲液预孵育时,通过添加PG,比微粒体酶(13-14倍与2-3倍)相比,在更大程度上活化细胞溶质酶。然而,在用MgATP预孵育后,通过添加pg(3-6倍)将细胞溶质在较小程度上活化。 MgATP对酶的抑制需要预孵育,并且当ADP或AMP取代ATP时,不存在。此外,ATP类似物如腺苷5' - β - β,γ-亚甲基]三磷酸和腺苷5' - [γ-THIO]三磷酸在预孵育中取代ATP时也未能抑制酶。 MgATP的抑制不受预孵育中的环状放大器的影响,但是在预孵育中单独的Ca2 +离子或加二酰基甘油略微增加抑制。通过在预孵育中包含环状AMP依赖性蛋白激酶的抑制剂,废除了抑制。这些观察结果集体,通过蛋白质的磷酸化指向胎儿肺型细胞酰基转移酶的抑制,并表明肺表面活性剂产生的这种关键酶可以通过该机制调节。

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