Dhopeshiwarkar G A, Subramanian C
Lipids. 1976 Sep;11(9):689-92. doi: 10.1007/BF02532888.
[3-(14)C] Eicosatrienoic acid (delta11,14,17) chemically synthesized from [-(14)C] linolenic acid was injected intracranially into 14-day old rats and sacrificed 8 hr later. The analysis of brain fatty acids by radio-gas liquid chromatography before and after ozonolysis showed that the tetraene fraction consisted of a desaturated product, delta5,11,17-20:4, and its elongated product, delta7,13,16,19-22:4. Both of these products, with a combined total of 61% of the total radioactivity recovered in the tetraene fraction, contain a nonmethylene interrupted double bond system and, therefore, are unsuitable for further desaturation. The other two components, delta6,9,12,15-18:4 and delta8,11,14,14-20:4, must have been formed from delta9,12,15-18:3, formed by retroconversion of the starting material 20:3, followed by desaturation and elongation. These results suggest a lack of delta8 desaturase in the developing brain, leading to formation of delta5,11,14,17-20:4 rather than delta8,11,14,17-20:4. However, the nonmethylene interrupted doulbe bond isomer does not restrict chain elongation.
由[-(14)C]亚麻酸化学合成的[3-(14)C]二十碳三烯酸(δ11,14,17)被颅内注射到14日龄大鼠体内,并在8小时后处死。在臭氧化前后通过放射性气液色谱法对脑脂肪酸进行分析,结果显示四烯部分由一种去饱和产物δ5,11,17-20:4及其延长产物δ7,13,16,19-22:4组成。这两种产物在四烯部分回收的总放射性中占比共计61%,都含有一个非亚甲基间断双键系统,因此不适合进一步去饱和。另外两种成分,δ6,9,12,15-18:4和δ8,11,14,14-20:4,必定是由起始物质20:3逆转化形成的δ9,12,15-18:3,然后经过去饱和和延长而形成的。这些结果表明发育中的大脑缺乏δ8去饱和酶,导致形成δ5,11,14,17-20:4而非δ8,11,14,17-20:4。然而,非亚甲基间断双键异构体并不限制链的延长。