Pereira Suzette L, Leonard Amanda E, Mukerji Pradip
Abbott Laboratories, Ross Products Division, Department 105670, Building RP 4-3 3300 Stelzer Road, Columbus, OH 43219, USA.
Prostaglandins Leukot Essent Fatty Acids. 2003 Feb;68(2):97-106. doi: 10.1016/s0952-3278(02)00259-4.
The biosynthesis of polyunsaturated fatty acids (PUFAs) in different organisms can involve a variety of pathways, catalyzed by a complex series of desaturation and elongation steps. A range of different desaturases have been identified to date, capable of introducing double bonds at various locations on the fatty acyl chain. Some recently identified novel desaturases include a delta4 desaturase from marine fungi, and a bi-functional delta5/delta6 desaturase from zebrafish. Using molecular genetics approaches, these desaturase genes have been isolated, identified, and expressed in variety of heterologous hosts. Results from these studies will help increase our understanding of the biochemistry of desaturases and the regulation of PUFA biosynthesis. This is of significance because PUFAs play critical roles in multiple aspects of membrane physiology and signaling mechanisms which impact human health and development.
不同生物体中多不饱和脂肪酸(PUFAs)的生物合成可涉及多种途径,这些途径由一系列复杂的去饱和和延长步骤催化。迄今为止,已鉴定出一系列不同的去饱和酶,它们能够在脂肪酰链的不同位置引入双键。一些最近鉴定出的新型去饱和酶包括来自海洋真菌的Δ4去饱和酶和来自斑马鱼的双功能Δ5/Δ6去饱和酶。利用分子遗传学方法,这些去饱和酶基因已被分离、鉴定并在多种异源宿主中表达。这些研究结果将有助于增进我们对去饱和酶生物化学以及PUFA生物合成调控的理解。这具有重要意义,因为PUFAs在膜生理学和信号传导机制的多个方面发挥着关键作用,而这些方面会影响人类健康和发育。