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在发育中的红花种子微粒体中,通过油酰磷脂酰胆碱从油酰辅酶A生物合成亚油酸酯。

The biosynthesis of linoleate from oleoyl-CoA via oleoyl-phosphatidylcholine in microsomes of developing safflower seeds.

作者信息

Stymne S, Appelqvist L A

出版信息

Eur J Biochem. 1978 Oct;90(2):223-9. doi: 10.1111/j.1432-1033.1978.tb12594.x.

Abstract

Microsomes prepared from developing safflower seeds rapidly desaturated added [14C]oleoyl-CoA in the presence of NADH. The distribution of [14C]oleate and [14C]linoleate between different lipid classes revealed that phosphatidylcholine was labelled with [14C]linoleate before any other lipid class investigated. Considerable desaturation continued after the disappearance of [14C]oleoyl-CoA in the reaction mixture. No [14C]linoleoyl-CoA could be detected. Incubation in the absence of added NADH caused a rapid disappearance of [14C]oleoyl-CoA by incorporation into triacylglycerols and phosphatidylcholine and also by release as [14C]oleic acid. Upon subsequent addition of NADH, [14C]linoleate was formed to the same extent as when NADH was present at the onset of the incubation. These data are contradictory to the previously assumed pathway for linoleic acid biosynthesis in developing safflower seeds, claiming oleoyl-CoA as the direct substrate and linoleoyl-CoA as the primary product. However, our data corroborate published results on Chlorella, Candida, Torulopsis and on developing pea leaves, which strongly suggest that oleoyl-CoA is first incorporated into phosphatidylcholine and then desaturated to linoleoyl-phosphatidylcholine.

摘要

从发育中的红花种子制备的微粒体在NADH存在下能迅速使添加的[14C]油酰辅酶A去饱和。[14C]油酸酯和[14C]亚油酸酯在不同脂质类别中的分布表明,在研究的任何其他脂质类别之前,磷脂酰胆碱就已被[14C]亚油酸酯标记。在反应混合物中[14C]油酰辅酶A消失后,仍有相当程度的去饱和继续进行。未检测到[14C]亚油酰辅酶A。在不添加NADH的情况下孵育,会导致[14C]油酰辅酶A通过掺入三酰甘油和磷脂酰胆碱以及以[14C]油酸形式释放而迅速消失。随后添加NADH时,[14C]亚油酸酯的形成程度与孵育开始时存在NADH时相同。这些数据与之前假定的发育中的红花种子中亚油酸生物合成途径相矛盾,该途径认为油酰辅酶A是直接底物,亚油酰辅酶A是主要产物。然而,我们的数据证实了关于小球藻、念珠菌、球拟酵母以及发育中的豌豆叶片的已发表结果,这些结果强烈表明油酰辅酶A首先掺入磷脂酰胆碱,然后去饱和为亚油酰磷脂酰胆碱。

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