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磷脂酰甘油在大鼠肺CTP:磷酸胆碱胞苷转移酶激活中的作用。

The role of phosphatidylglycerol in the activation of CTP:phosphocholine cytidylyltransferase from rat lung.

作者信息

Feldman D A, Kovac C R, Dranginis P L, Weinhold P A

出版信息

J Biol Chem. 1978 Jul 25;253(14):4980-6.

PMID:209024
Abstract

The reaction catalyzed by CTP:phosphocholine cytidylyltransferase in the reverse direction, i.e. the formation of CTP and phosphocholine from CDP-choline and pyrophosphate, is slightly faster than the reaction in the forward direction. The reverse reaction is optimal at 2 mM pyrophosphate and 6 mM Mg2+, in both fetal and adult preparations. The apparent substrate Km values for phosphocholine, CDP-choline, and pyrophosphate are similar in the fetal and adult forms of the enzyme. The enzyme activity is separated into two forms by gel filtration. The enzyme from adult lung exists as a high molecular weight species, ranging in size from 5 X 10(6) to 50 X 10(6). The enzyme from fetal lung exists as a 190,000 molecular weight species and is totally dependent upon added anionic phospholipid for activity in both the forward and reverse direction. The addition of phosphatidylglycerol gives maximal activity, while phosphatidylinositol or cardiolipin produce about 60 to 70% of the maximal activity. Enzyme activation is accompanied by an aggregation of the enzyme. A sonicated preparation of phosphatidylglycerol is a more efficient activator than a preparation mixed on a Vortex mixer (KA = 30 micronM) and also converts a larger proportion of enzyme from fetal lung into a high molecular weight species. The enzyme from adult lung can be dissociated into a form in fetal lung. The dissociated species can be converted back to a high molecular weight form in the presence of phosphatidylglycerol.

摘要

CTP

磷酸胆碱胞苷转移酶催化的逆向反应,即由CDP - 胆碱和焦磷酸形成CTP和磷酸胆碱的反应,比正向反应稍快。在胎儿和成人的制剂中,逆向反应在2 mM焦磷酸和6 mM Mg2+时最为适宜。该酶胎儿型和成人型中,磷酸胆碱、CDP - 胆碱和焦磷酸的表观底物Km值相似。通过凝胶过滤可将该酶活性分离为两种形式。来自成人肺的酶以高分子量形式存在,大小范围从5×10(6)到50×10(6)。来自胎儿肺的酶以分子量为190,000的形式存在,并且在正向和逆向反应中其活性完全依赖于添加的阴离子磷脂。添加磷脂酰甘油可产生最大活性,而磷脂酰肌醇或心磷脂产生的活性约为最大活性的60%至70%。酶的激活伴随着酶的聚集。超声处理的磷脂酰甘油制剂比在涡旋混合器上混合的制剂(KA = 30 μM)是更有效的激活剂,并且还能将更大比例的胎儿肺中的酶转化为高分子量形式。来自成人肺的酶可解离成胎儿肺中的一种形式。在磷脂酰甘油存在下,解离的形式可转化回高分子量形式。

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