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在与应激牛瘤胃液共同孵育期间α-亚麻酸的代谢:产物与机制

Metabolism of α-linolenic acid during incubations with strained bovine rumen contents: products and mechanisms.

作者信息

Honkanen Anne M, Leskinen Heidi, Toivonen Vesa, McKain Nest, Wallace R John, Shingfield Kevin J

机构信息

1Nutritional Physiology, Green Technology, Natural Resources Institute Finland (Luke),FI-31600 Jokioinen,Finland.

2Rowett Institute of Nutrition and Health,University of Aberdeen,Bucksburn,AberdeenAB21 9SB,UK.

出版信息

Br J Nutr. 2016 Jun;115(12):2093-105. doi: 10.1017/S0007114516001446. Epub 2016 Apr 18.

Abstract

Description of α-linolenic acid (cis-9,cis-12,cis-15-18 : 3, ALA) metabolism in the rumen is incomplete. Ruminal digesta samples were incubated with ALA and buffer containing water or deuterium oxide to investigate the products and mechanisms of ALA biohydrogenation. Geometric Δ9,11,15-18 : 3 isomers were the main intermediates formed from ALA. An increase in the n+1 isotopomers of Δ9,11,15-18 : 3 was due to 2H labelling at C-13. Isomers of Δ9,11,13-18 : 3, cis-7,cis-12,cis-15-18 : 3 and cis-8,cis-12,cis-15-18 : 3 were also formed. No increase in n+1 isotopomers of Δ7,12,15-18 : 3 or Δ8,12,15-18 : 3 was detected. Enrichment in n+2 isotopomers of 18 : 2 products indicated that ALA metabolism continued via the reduction of 18 : 3 intermediates. Isomers of Δ9,11,15-18 : 3 were reduced to Δ11,15-18 : 2 labelled at C-9 and C-13. ALA resulted in the formation of Δ11,13-18 : 2 and Δ12,14-18 : 2 containing multiple 2H labels. Enrichment of the n+3 isotopomer of Δ12,15-18 : 2 was also detected. Metabolism of ALA during incubations with rumen contents occurs by one of three distinct pathways. Formation of Δ9,11,15-18 : 3 appears to be initiated by H abstraction on C-13. Octadecatrienoic intermediates containing cis-12 and cis-15 double bonds are formed without an apparent H exchange with water. Labelling of Δ9,11,13-18 : 3 was inconclusive, suggesting formation by an alternative mechanism. These findings explain the appearance of several bioactive fatty acids in muscle and milk that influence the nutritional value of ruminant-derived foods.

摘要

瘤胃中α-亚麻酸(顺-9,顺-12,顺-15-18:3,ALA)的代谢描述尚不完整。将瘤胃消化物样本与ALA以及含有水或氧化氘的缓冲液一起孵育,以研究ALA生物氢化的产物和机制。几何异构体Δ9,11,15-18:3是由ALA形成的主要中间体。Δ9,11,15-18:3的n + 1同位素异构体增加是由于C-13处的2H标记。还形成了Δ9,11,13-18:3、顺-7,顺-12,顺-15-18:3和顺-8,顺-12,顺-15-18:3的异构体。未检测到Δ7,12,15-18:3或Δ8,12,15-18:3的n + 1同位素异构体增加。18:2产物的n + 2同位素异构体富集表明,ALA代谢通过18:3中间体的还原继续进行。Δ9,11,15-18:3的异构体被还原为在C-9和C-13处标记的Δ11,15-18:2。ALA导致形成含有多个2H标记的Δ11,13-18:2和Δ12,14-18:2。还检测到了Δ12,15-18:2的n + 3同位素异构体的富集。在与瘤胃内容物孵育期间,ALA的代谢通过三种不同途径之一发生。Δ9,11,15-18:3的形成似乎是由C-13上的氢提取引发的。含有顺-12和顺-15双键的十八碳三烯酸中间体的形成没有与水进行明显的氢交换。Δ9,11,13-18:3的标记尚无定论,表明其通过另一种机制形成。这些发现解释了肌肉和牛奶中几种生物活性脂肪酸的出现,这些脂肪酸会影响反刍动物源性食品的营养价值。

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