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叶绿体被膜中磷脂的酰基辅酶A依赖性酰化作用。

Acyl-CoA dependent acylation of phospholipids in the chloroplast envelope.

作者信息

Kjellberg J M, Trimborn M, Andersson M, Sandelius A S

机构信息

Göteborg University, Botanical Institute, Department of Plant Physiology, Sweden.

出版信息

Biochim Biophys Acta. 2000 May 31;1485(2-3):100-10. doi: 10.1016/s1388-1981(00)00040-8.

Abstract

Acyl-CoAs are substrates for acyl lipid synthesis in the endoplasmic reticulum. In addition, they may also be substrates for lipid acylation in other membranes. In order to assess whether lipid acylation may have a role in plastid lipid metabolism, we have studied the incorporation of radiolabelled fatty acids from acyl-CoAs into lipids in isolated, intact pea chloroplasts. The labelled lipids were phosphatidylcholine (PC), phosphatidylglycerol (PG), phosphatidylinositol and free fatty acids. With oleoyl-CoA, the fatty acid was incorporated preferably into the sn-2 position of PC and the acylation activity mainly occurred in fractions enriched in inner chloroplast envelope. Added lysoPC stimulated the activity. With palmitoyl-CoA, the fatty acid was incorporated primarily into the sn-1 position of PG and the reaction occurred at the surface of the chloroplasts. As chloroplast-synthesized PG generally contains 16C fatty acids in the sn-2 position, we propose that the acylation of PG studied represents activities present in a domain of the endoplasmic reticulum or an endoplasmic reticulum-derived fraction that is associated with chloroplasts and maintains this association during isolation. This domain or fraction contains a discreet population of lipid metabolizing activities, different from that of bulk endoplasmic reticulum, as shown by that with isolated endoplasmic reticulum, acyl-CoAs strongly labelled phosphatidic acid and phosphatidylethanolamine, lipids that were never labelled in the isolated chloroplasts.

摘要

酰基辅酶A是内质网中酰基脂质合成的底物。此外,它们也可能是其他膜中脂质酰化的底物。为了评估脂质酰化是否可能在质体脂质代谢中发挥作用,我们研究了从酰基辅酶A中掺入放射性标记脂肪酸到分离的完整豌豆叶绿体脂质中的情况。标记的脂质有磷脂酰胆碱(PC)、磷脂酰甘油(PG)、磷脂酰肌醇和游离脂肪酸。对于油酰辅酶A,脂肪酸优先掺入PC的sn-2位,酰化活性主要发生在富含叶绿体内膜的部分。添加溶血磷脂酰胆碱可刺激该活性。对于棕榈酰辅酶A,脂肪酸主要掺入PG的sn-1位,反应发生在叶绿体表面。由于叶绿体合成的PG通常在sn-2位含有16碳脂肪酸,我们提出所研究的PG酰化代表内质网的一个区域或内质网衍生部分中存在的活性,该区域与叶绿体相关,并在分离过程中保持这种关联。该区域或部分含有一组独特的脂质代谢活性,与内质网主体不同,如在分离的内质网中,酰基辅酶A强烈标记磷脂酸和磷脂酰乙醇胺,而这些脂质在分离的叶绿体中从未被标记。

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