K.A. Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, Botanicheskaya Street 25, 127276 Moscow, Russia.
Laboratory of High-Resolution Mass Spectrometry and NMR Spectroscopy of the Scientific and Educational Center, Peoples' Friendship University of Russia (RUDN University), Miklukho-Maklaya Street, Build. 6, 117198 Moscow, Russia.
Biomolecules. 2022 Dec 1;12(12):1795. doi: 10.3390/biom12121795.
Fatty acid desaturases (FADs) play important roles in various metabolic and adaptive pathways in all living organisms. They represent a superfamily of oxygenases that introduce double bonds into the acyl chains of fatty acids (FAs). These enzymes are highly specific to the length of the carbon chain, position of double bonds formation, etc. The modes by which FADs "count" the position of the double bond formation may differ. In cyanobacteria, the first double bond is formed between 9th and 10th carbons (position Δ), counting from the carboxylic end of an FA. Other FADs that produce polyunsaturated FAs may introduce double bonds counting from the carboxyl (Δ) or methyl (ω) terminus, or from a pre-existing double bond towards carboxyl or methyl terminus of an FA chain. Here, we expressed the gene for the Δ6-FAD from sp. PCC 6803 in PCC 7942 (which is capable of synthesizing only monoenoic FAs desaturated mainly at position Δ) and observed the appearance of unusual monoenoic FAs desaturated at position Δ, as well as Δ dienoic FAs. Exogenously added -10-heptadecenoic acid (17:1Δ) was converted into -6,10-heptadecadienoic (17:2Δ). These data demonstrate the ability of Δ6-FAD to introduce the first double bond into the unsaturated substrates and suggests that it "counts" from the carboxyl end, irrespective of the absence or presence of a previous double bond in an FA chain.
脂肪酸去饱和酶(FADs)在所有生物体的各种代谢和适应途径中发挥着重要作用。它们代表了一类氧合酶超家族,能够在脂肪酸(FAs)的酰基链中引入双键。这些酶对碳链的长度、双键形成的位置等具有高度的特异性。FADs“计数”双键形成位置的方式可能不同。在蓝细菌中,第一个双键是在第 9 位和第 10 位碳原子之间形成的(位置 Δ),从 FA 的羧基端开始计数。其他产生多不饱和 FAs 的 FADs 可能从羧基(Δ)或甲基(ω)端开始引入双键,或者从 FA 链的羧基或甲基端的预先存在的双键开始引入双键。在这里,我们在 PCC 7942 中表达了来自 sp. PCC 6803 的 Δ6-FAD 基因(它只能合成主要在位置 Δ 饱和的单烯脂肪酸),并观察到了在位置 Δ 饱和的异常单烯脂肪酸以及 Δ 二烯脂肪酸的出现。外源性添加的-10-十七碳烯酸(17:1Δ)被转化为-6,10-十七碳二烯酸(17:2Δ)。这些数据表明 Δ6-FAD 能够将第一个双键引入不饱和底物中,并表明它“从羧基端开始计数”,而与 FA 链中是否存在先前的双键无关。