The metabolism of CDP-diacylglycerol and phosphatidylinositol in the microsomal fraction of rat liver. Effects of chlorpromazine, magnesium and manganese.
作者信息
Zborowski J, Brindley D N
出版信息
Biochim Biophys Acta. 1983 Mar 22;751(1):81-9. doi: 10.1016/0005-2760(83)90259-x.
The metabolism of CDPdiacylglycerol and phosphatidylinositol was measured using substrates bound to the microsomal membranes of rat liver. 2. Chlorpromazine inhibited the degradation of [14C]CDPdiacylglycerol and the concomitant inositol-independent release of 14C in water-soluble products in the presence of various concentrations of Mg2+ and Mn2+. 3. The activity of CDPdiacylglycerol inositol phosphatidyltransferase was measured by determining the rate of incorporation of [3H]inositol into phosphatidylinositol, and by the inositol-dependent release of water-soluble 14C from [14C]CDPdiacylglycerol. Both of these parameters were inhibited by chlorpromazine in incubations that contained rate-limiting concentrations of Mg2+. However, chlorpromazine stimulated the reaction when 20 mM Mg2+, 0.5 mM Mn2+, 2 mM Mn2+ or 20 mM Mn2+ was added to the incubations. 4. Low concentrations of chlorpromazine increased an inositol-exchange reaction in the presence of 0.5 mM Mn2+ whereas higher concentrations of chlorpromazine inhibited. Chlorpromazine had relatively less effect on the inositol-exchange reaction at higher concentrations of Mn2+. 5. The action of chlorpromazine in decreasing the breakdown of CDPdiacylglycerol and in stimulating its conversion to phosphatidylinositol could explain part of the mechanism by which this compound and other amphiphilic cations increase the synthesis of acidic phospholipids.
摘要
使用与大鼠肝脏微粒体膜结合的底物来测定CDP二酰甘油和磷脂酰肌醇的代谢。2. 在存在不同浓度的Mg2+和Mn2+的情况下,氯丙嗪抑制了[14C]CDP二酰甘油的降解以及随之而来的14C在水溶性产物中的非肌醇依赖性释放。3. 通过测定[3H]肌醇掺入磷脂酰肌醇的速率以及[14C]CDP二酰甘油中水溶性14C的肌醇依赖性释放来测量CDP二酰甘油肌醇磷脂转移酶的活性。在含有限速浓度Mg2+的孵育中,这两个参数均被氯丙嗪抑制。然而,当向孵育中加入20 mM Mg2+、0.5 mM Mn2+、2 mM Mn2+或20 mM Mn2+时,氯丙嗪刺激了该反应。4. 在存在0.5 mM Mn2+的情况下,低浓度的氯丙嗪增加了肌醇交换反应,而高浓度的氯丙嗪则起抑制作用。在较高浓度的Mn2+下,氯丙嗪对肌醇交换反应的影响相对较小。5. 氯丙嗪在减少CDP二酰甘油分解以及刺激其转化为磷脂酰肌醇方面的作用可以解释该化合物和其他两亲性阳离子增加酸性磷脂合成的部分机制。