When [1-14C]oleoyl-CoA was incubated with a pea-leaf homogenate oleate was both incorporated into microsomal 3-sn-phosphatidylcholine and released as the unesterified fatty acid. The proportion of oleate incorporated into this phospholipid was dependent on the relative amounts of thiol ester and microsomal preparation present in reactions. 2. At the concentrations of microsomal preparation and [14C]oleoyl-CoA used to study oleate desaturation the metabolism of the thiol ester was essentially complete after 5 min incubation, but the loss of label from 3-sn-phosphatidylcholine oleate and the concomitant increase in radioactivity in the linoleate of this phospholipid proceeded at approximately linear rates over a 60 min period. The kinetics of labelling of unesterified linoleate was consistent with the view that this labelled fatty acid was derived from 3-sn-phosphatidylcholine. 3. Oleate desaturation required oxygen and with unwashed microsomal fractions was stimulated either by NADPH or by the 105 000g supernatant. Washed microsomal preparations did not catalyse desaturation, but actively was restored by the addition of NADPH, 105 000G supernatant or Sephadex-treated supernatant. NADPH could be replaced by NADH or NADP+, but not by NAD+. 4. Microsomal fractions from mature and immature maize lamina and expanding spinach leaves also rapidly incorporated oleate from ([14C]oleoyl-CoA into 3-sn-phosphatidylcholine, but desaturation of 3-sn-phosphatidylcholine oleate was detected only with microsomal preparations from immature maize lamina. 5. It is proposed that leaf microsomal preparations posses an oleate desaturase for which 3-sn-phosphatidylcholine oleate is either the substrate or an immediate precursor of the substrate.
摘要
当[1-14C]油酰辅酶A与豌豆叶匀浆一起温育时,油酸既被掺入微粒体3- sn -磷脂酰胆碱中,又以未酯化脂肪酸的形式释放出来。掺入这种磷脂的油酸比例取决于反应中硫酯和微粒体制剂的相对量。2. 在用于研究油酸去饱和作用的微粒体制剂和[14C]油酰辅酶A浓度下,硫酯的代谢在温育5分钟后基本完成,但3- sn -磷脂酰胆碱油酸中标记物的损失以及该磷脂中亚油酸放射性的相应增加在60分钟内以近似线性的速率进行。未酯化亚油酸标记的动力学与这种标记脂肪酸源自3- sn -磷脂酰胆碱的观点一致。3. 油酸去饱和需要氧气,对于未洗涤的微粒体部分,NADPH或105 000g上清液可刺激其去饱和。洗涤过的微粒体制剂不催化去饱和,但通过添加NADPH、105 000G上清液或经葡聚糖凝胶处理的上清液可恢复活性。NADPH可被NADH或NADP +替代,但不能被NAD +替代。4. 来自成熟和未成熟玉米叶片以及正在伸展的菠菜叶的微粒体部分也能迅速将([14C]油酰辅酶A中的油酸掺入3- sn -磷脂酰胆碱中,但仅从未成熟玉米叶片的微粒体制剂中检测到3- sn -磷脂酰胆碱油酸的去饱和。5. 有人提出,叶片微粒体制剂具有一种油酸去饱和酶,对于该酶而言,3- sn -磷脂酰胆碱油酸要么是底物,要么是底物的直接前体。