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Role of phospholipids containing docosahexaenoyl chains in modulating the activity of protein kinase C.

机译:含二十二碳六烯酰基链的磷脂在调节蛋白激酶C活性中的作用

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摘要

It is known that the phospholipids of the brain cells of fish are altered during cold adaptation. In particular, the 1-monounsaturated 2-polyunsaturated phosphatidylethanolamines (PEs) increase 2- to 3-fold upon adaptation to cold. One of the most striking changes is in the 18:1/22:6 species of PE. We determined how this lipid affected the bilayer-to-hexagonal-phase transition temperature of 16:1/16:1 PE. We found that it was more effective in lowering this transition temperature than were other, less unsaturated, PE species. In addition, it was not simply the presence of the 18:1/22:6 acyl chains which caused this effect, since the 18:1/22:6 species of phosphatidylcholine had the opposite effect on this transition temperature. Zwitterionic substances that lower the bilayer-to-hexagonal-phase transition temperature often cause an increase in the activity of protein kinase C (PKC). Indeed, the 18:1/22:6 PE caused an increase in the rate of histone phosphorylation by PKC which was greater than that caused by other, less unsaturated, PEs. The 18:1/22:6 phosphatidylcholine had no effect on this enzyme. The stimulation of the activity of PKC by the 18:1/22:6 PE is a consequence of this lipid's increasing the partitioning of PKC to the membrane.
机译:众所周知,鱼类的脑细胞磷脂在冷适应过程中会发生变化。特别地,1-单不饱和2-多不饱和磷脂酰乙醇胺(PE)在适应寒冷时增加2-3倍。最引人注目的变化之一是18:1/22:6的PE。我们确定了这种脂质如何影响16:16/16:1 PE的双层至六角相转变温度。我们发现,与其他不饱和度较低的PE物种相比,它在降低此转变温度方面更有效。此外,不仅仅是18:1/22:6酰基链的存在导致了这种效应,因为18:1/22:6的磷脂酰胆碱对这一转变温度的作用相反。降低双层至六方相转变温度的两性离子物质通常会导致蛋白激酶C(PKC)的活性增加。实际上,18:1/22:6 PE导致PKC引起的组蛋白磷酸化速率的增加大于由其他不饱和度较低的PE引起的组蛋白磷酸化速率的增加。 18:1/22:6磷脂酰胆碱对此酶没有影响。 18:1/22:6 PE刺激PKC活性是该脂质增加PKC在膜上分配的结果。

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