首页> 美国卫生研究院文献>Eukaryotic Cell >Dictyostelium discoideum Dgat2 Can Substitute for the Essential Function of Dgat1 in Triglyceride Production but Not in Ether Lipid Synthesis
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Dictyostelium discoideum Dgat2 Can Substitute for the Essential Function of Dgat1 in Triglyceride Production but Not in Ether Lipid Synthesis

机译:Dictyostelium discoideum Dgat2可以替代Dgat1在甘油三酸酯生产中的基本功能但不能在醚脂质合成中替代

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摘要

Triacylglycerol (TAG), the common energy storage molecule, is formed from diacylglycerol and a coenzyme A-activated fatty acid by the action of an acyl coenzyme A:diacylglycerol acyltransferase (DGAT). In order to conduct this step, most organisms rely on more than one enzyme. The two main candidates in Dictyostelium discoideum are Dgat1 and Dgat2. We show, by creating single and double knockout mutants, that the endoplasmic reticulum (ER)-localized Dgat1 enzyme provides the predominant activity, whereas the lipid droplet constituent Dgat2 contributes less activity. This situation may be opposite from what is seen in mammalian cells. Dictyostelium Dgat2 is specialized for the synthesis of TAG, as is the mammalian enzyme. In contrast, mammalian DGAT1 is more promiscuous regarding its substrates, producing diacylglycerol, retinyl esters, and waxes in addition to TAG. The Dictyostelium Dgat1, however, produces TAG, wax esters, and, most interestingly, also neutral ether lipids, which represent a significant constituent of lipid droplets. Ether lipids had also been found in mammalian lipid droplets, but the role of DGAT1 in their synthesis was unknown. The ability to form TAG through either Dgat1 or Dgat2 activity is essential for Dictyostelium to grow on bacteria, its natural food substrate.
机译:三酰基甘油(TAG)是常见的储能分子,是通过酰基辅酶A:二酰基甘油酰基转移酶(DGAT)的作用由二酰基甘油和辅酶A活化的脂肪酸形成的。为了执行此步骤,大多数生物都依赖一种以上的酶。盘基网柄菌的两个主要候选者是Dgat1和Dgat2。我们显示,通过创建单敲除和双敲除突变体,内质网(ER)定位的Dgat1酶提供了主要的活性,而脂滴成分Dgat2的活性却降低了。这种情况可能与在哺乳动物细胞中看到的情况相反。 Dictyostelium Dgat2和哺乳动物酶一样专门用于TAG的合成。相比之下,哺乳动物DGAT1在其底物方面更为混杂,除了TAG以外还产生二酰基甘油,视黄酯和蜡。然而,Dictyostelium Dgat1会产生TAG,蜡酯,最有趣的是会产生中性醚脂质,这些脂质代表了脂质液滴的重要组成部分。在哺乳动物脂质滴中也发现了醚脂质,但DGAT1在其合成中的作用尚不清楚。通过Dgat1或Dgat2活性形成TAG的能力对于Dictyostelium在细菌(其天然食物基质)上生长至关重要。

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