Daligault Franck, Reed Darwin W, Savile Christopher K, Nugier-Chauvin Caroline, Patin Henri, Covello Patrick S, Buist Peter H
Laboratoire de Chimie des Biomolécules et des Systèmes Organisés, CNRS UMR 6052, Ecole Nationale Superieure de Chimie de Rennes, Ave du Gal Leclerc, 35700 Rennes Beaulieu, France.
Phytochemistry. 2003 Aug;63(7):739-44. doi: 10.1016/s0031-9422(03)00334-0.
alpha-Linolenic acid (ALA, 9(Z),12(Z),15(Z)-octadecatrienoic acid) derivatives are important plant lipids which play a critical key role in cold tolerance. The final steps of ALA biosynthesis feature a series of regio- and stereoselective dehydrogenation reactions which are catalyzed by a set of enzymes known as fatty acid desaturases. In conjunction with ongoing research into the structural biology of these remarkable catalysts, we have examined the mechanism of double bond introduction at C15,16 as it occurs in a model photosynthetic organism, Chlorella vulgaris. The individual deuterium kinetic isotope effects associated with the C-H bond cleavages at C-15 and C-16 of a thialinoleoyl analogue were measured via competition experiments using appropriately deuterium-labelled 7-thia substrates. A large kinetic isotope effect (KIE) (k(H)/k(D)=10.2+/-2.8) was observed for the C-H bond-breaking step at C-15 while the C-H bond cleavage at C-16 was found to be relatively insensitive to deuterium substitution (k(H)/k(D)=0.8+/-0.2). These results point to C-15 as the site of initial oxidation in omega-3 desaturation and imply that the Chlorella and corresponding plant systems share a common active site architecture.
α-亚麻酸(ALA,9(Z),12(Z),15(Z)-十八碳三烯酸)衍生物是重要的植物脂质,在耐寒性方面起着关键作用。ALA生物合成的最后步骤具有一系列区域和立体选择性脱氢反应,这些反应由一组称为脂肪酸去饱和酶的酶催化。结合对这些非凡催化剂的结构生物学的持续研究,我们研究了在模式光合生物小球藻中发生的C15,16双键引入机制。通过使用适当氘标记的7-硫代底物的竞争实验,测量了与硫代亚油酰类似物C-15和C-16处C-H键断裂相关的单个氘动力学同位素效应。在C-15处的C-H键断裂步骤中观察到较大的动力学同位素效应(KIE)(k(H)/k(D)=10.2±2.8),而发现C-16处的C-H键断裂对氘取代相对不敏感(k(H)/k(D)=0.8±0.2)。这些结果表明C-15是ω-3去饱和初始氧化的位点,并暗示小球藻和相应的植物系统具有共同的活性位点结构。