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大鼠睾丸中二十碳-11,14-二烯酸的代谢。δ8-去饱和酶活性的证据。

Metabolism of eicosa-11,14-dienoic acid in rat testes. Evidence for delta8-desaturase activity.

作者信息

Albert D H, Coniglio J G

出版信息

Biochim Biophys Acta. 1977 Dec 21;489(3):390-6. doi: 10.1016/0005-2760(77)90159-x.

Abstract

The metabolism of [14C]eicosa-11,14-dienoic acid was investigated in rat testes in vivo and in vitro. Intratesticular injection of [1-14C]eicosa-11,14-dienoic acid resulted in the appearance of radioactivity (4-30% of 14C in total fatty acids) in 20-carbon trienoic fatty acids and a small amount (2-3.5%) in arachidonic acid. Analysis of the 20-carbon trienoic acid fraction by ozonolysis indicated that 15 to 34% of the 14C in this fraction was in an 8-carbon fragment originating from eicosa-8,11,14-trienoic acid. The rest (66 to 84%) was in a 5-carbon fragment, presumably originating from eicosa-5,11,14-trienoic acid. Incubation of testicular tissue minces or microsomes with [1-14C]eicosa-11,14-dienoic acid yielded labeled eicosa-8,11,14- and eicosa-5,11,14-trienoic acids in proportions similar to those obtained in vivo. Added unlabeled acetate had no effect on the formation of [14C]eicose-8,11,14-trienoic acid in vitro. Therefore, it is unlikely that the labeled eicosa-8,11,14-trienoic acid arose from elongation of octadeca-6,9,12-trienoic acid with labeled acetate derived from bio-oxidation of the labeled substrate. These results are compatible with a limited desaturation of eicosa-11,14-dienoic acid to eicosa-8,11,14-trienoic acid and provide evidence for delta8 desaturate activity in rat testis.

摘要

在大鼠睾丸中对[14C]二十碳-11,14-二烯酸的代谢进行了体内和体外研究。睾丸内注射[1-14C]二十碳-11,14-二烯酸导致20碳三烯脂肪酸中出现放射性(占总脂肪酸中14C的4 - 30%),花生四烯酸中有少量放射性(2 - 3.5%)。通过臭氧分解对20碳三烯酸部分进行分析表明,该部分中14C的15%至34%存在于源自二十碳-8,11,14-三烯酸的8碳片段中。其余部分(66%至84%)存在于5碳片段中,推测源自二十碳-5,11,14-三烯酸。用[1-14C]二十碳-11,14-二烯酸孵育睾丸组织碎块或微粒体,产生标记的二十碳-8,11,14-和二十碳-5,11,14-三烯酸,其比例与体内获得的比例相似。添加未标记的乙酸盐对体外[14C]二十碳-8,11,14-三烯酸的形成没有影响。因此,标记的二十碳-8,11,14-三烯酸不太可能由十八碳-6,9,12-三烯酸与标记底物生物氧化产生的标记乙酸盐延长而来。这些结果与二十碳-11,14-二烯酸有限地去饱和为二十碳-8,11,14-三烯酸相一致,并为大鼠睾丸中的δ8去饱和酶活性提供了证据。

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