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首页> 外文期刊>Applied Microbiology and Biotechnology >Substrate specificity and membrane topologies of the iron-containing omega 3 and omega 6 desaturases from Mortierella alpina
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Substrate specificity and membrane topologies of the iron-containing omega 3 and omega 6 desaturases from Mortierella alpina

机译:来自含铁的含铁的底物特异性和膜拓扑,来自莫尔艾尔菌阿尔皮纳的含铁ω3和ω6去饱和酶

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Polyunsaturated fatty acids (PUFAs) are essential lipids for cell function, normal growth, and development, serving as key structural components of biological membranes and modulating critical signal transduction events. Omega-3 (n-3) long chain PUFAs (LC-PUFAs) such as eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) have been shown to protect against inflammatory diseases and enhance brain development and function. This had led to a marked increase in demand for fish and fish oils in human diets, supplements, and aquaculture and created a need for new, sustainable n-3 LC-PUFA sources. We have studied for the first time homogenous preparations of the membrane-type omega 6 and omega 3 fatty acid desaturases from the fungus Mortierella alpina, as a model system to produce PUFAs. These desaturases possess a di-iron metal center and are selective for 18:1 n-9 and 18:2 n-6 acyl-CoA substrates, respectively. Sequence alignments and membrane topology predictions support that these enzymes have unique cap regions that may include the rearrangement and repositioning of the active site, especially when compared to the mammalian stearoyl-coenzyme A desaturase-1 (SCD1) and the related sphingolipid alpha-hydroxylase (Scs7p) that act upon different substrates.
机译:多不饱和脂肪酸(PUFAs)是用于细胞功能,正常生长和发育的必需脂质,用作生物膜的关键结构组分和调节关键信号转导事件。已显示ω-3(N-3)长链PUFAS(LC-PUFA)如eicosapentaeno酸(EPA)和十二碳六烯酸(DHA),以防止炎症性疾病,增强脑发育和功能。这导致人类饮食,补充剂和水产养殖中鱼油的需求显着增加,并为新的可持续N-3 LC-PUFA来源创造了一种。我们研究了来自真菌的膜型ω6和Omega 3脂肪酸去饱和酶的第一次均匀制剂,作为生产PUFA的模型系统。这些去饱和酶具有二铁金属中心,并分别选择为18:1n-9和18:2 N-6酰基-CoA基材。序列对准和膜拓扑预测支持,这些酶具有独特的帽区域,其可包括对活性位点的重排和重新定位,特别是与哺乳动物硬脂酰基 - 辅酶A-1(SCD1)和相关的鞘脂α-羟基羟基羟基( SCS7P)作用在不同的基材上。

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