Sato N, Murata N
Biochim Biophys Acta. 1980 Aug 11;619(2):353-66. doi: 10.1016/0005-2760(80)90083-1.
Changes in fatty acids and lipid molecular species after shift of growth temperature were studied in the blue-green alga, Anabaena variabilis. In the first 10 h after a temperature shift from 38 to 22 degrees C, lipid synthesis was markedly suppressed. During this period most of the palmitic acid of the diacylmonogalactosylglycerol was desaturated to palmitoleic acid. Thereafter lipid synthesis resumed, and, in the following hours, the relative contents of palmitic and palmitoleic acids were almost restored to original levels. On the other hand, the oleic and linoleic acids were almost restored to original levels. On the other hand, the oleic and inoleic acids were desaturated to alpha-linolenic acid in all the lipid classes. The desaturation reaction of the C18 acids were slower than those of the C16 acids. In the first 5 h after a growth-temperature shift from 22 to 38 degrees C, lipid synthesis was considerably stimulated. During this period, the relative content of palmitic acid increased and that of palmitoleic acid decreased in the diacylmonogalactosylglycerol, and in the following 20 h, they were restored. The oleic and linoleic acids increased with a concomitant decrease in alpha-linolenic acid in all the lipid classes. The decreases in unsaturation in the C16 and C18 acids were due to the stimulated synthesis of more saturated fatty acids. Among the major molecular species of the lipids a particular change was seen in 1-oleoyl-2-palmitoylmonogalactosyl-sn-glycerol. This species rapidly decreased after the downward temperature shift and rapidly increased after the upward temperature shift. From the viewpoint of thermo-adaptive regulation of membrane fluidity, the central role played by the diacylmonogalactosylglycerol in temperature acclimation is discussed.
研究了变温蓝藻多变鱼腥藻(Anabaena variabilis)生长温度变化后脂肪酸和脂质分子种类的变化。在温度从38℃转变为22℃后的最初10小时内,脂质合成受到明显抑制。在此期间,二酰基单半乳糖基甘油中的大部分棕榈酸脱饱和为棕榈油酸。此后脂质合成恢复,在接下来的几个小时内,棕榈酸和棕榈油酸的相对含量几乎恢复到原始水平。另一方面,油酸和亚油酸几乎恢复到原始水平。另一方面,所有脂质类别中的油酸和亚油酸都脱饱和为α-亚麻酸。C18酸的脱饱和反应比C16酸的脱饱和反应慢。在生长温度从22℃转变为38℃后的最初5小时内,脂质合成受到显著刺激。在此期间,二酰基单半乳糖基甘油中棕榈酸的相对含量增加,棕榈油酸的相对含量减少,在接下来的20小时内,它们恢复到原来的水平。所有脂质类别中油酸和亚油酸增加,同时α-亚麻酸减少。C16和C18酸不饱和度的降低是由于更多饱和脂肪酸的合成受到刺激。在脂质的主要分子种类中,1-油酰基-2-棕榈酰单半乳糖基-sn-甘油出现了特别的变化。这种分子种类在温度下降后迅速减少,在温度上升后迅速增加。从膜流动性的热适应性调节角度,讨论了二酰基单半乳糖基甘油在温度适应中所起的核心作用。