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酿酒酵母中磷脂酰乙醇胺与三酰甘油代谢之间的代谢联系。

Metabolic link between phosphatidylethanolamine and triacylglycerol metabolism in the yeast Saccharomyces cerevisiae.

作者信息

Horvath Susanne E, Wagner Andrea, Steyrer Ernst, Daum Günther

机构信息

Institute of Biochemistry, Graz University of Technology, Petersgasse, Graz, Austria.

出版信息

Biochim Biophys Acta. 2011 Dec;1811(12):1030-7. doi: 10.1016/j.bbalip.2011.08.007. Epub 2011 Aug 19.

Abstract

In the yeast Saccharomyces cerevisiae triacylglycerols (TAG) are synthesized by the acyl-CoA dependent acyltransferases Dga1p, Are1p, Are2p and the acyl-CoA independent phospholipid:diacylglycerol acyltransferase (PDAT) Lro1p which uses phosphatidylethanolamine (PE) as a preferred acyl donor. In the present study we investigated a possible link between TAG and PE metabolism by analyzing the contribution of the four different PE biosynthetic pathways to TAG formation, namely de novo PE synthesis via Psd1p and Psd2p, the CDP-ethanolamine (CDP-Etn) pathway and lyso-PE acylation by Ale1p. In cells grown on the non-fermentable carbon source lactate supplemented with 5mM ethanolamine (Etn) the CDP-Etn pathway contributed most to the cellular TAG level, whereas mutations in the other pathways displayed only minor effects. In cki1∆dpl1∆eki1∆ mutants bearing defects in the CDP-Etn pathway both the cellular and the microsomal levels of PE were markedly decreased, whereas in other mutants of PE biosynthetic routes depletion of this aminoglycerophospholipid was less pronounced in microsomes. This observation is important because Lro1p similar to the enzymes of the CDP-Etn pathway is a component of the ER. We conclude from these results that in cki1∆dpl1∆eki1∆ insufficient supply of PE to the PDAT Lro1p was a major reason for the strongly reduced TAG level. Moreover, we found that Lro1p activity was markedly decreased in cki1∆dpl1∆eki1∆, although transcription of LRO1 was not affected. Our findings imply that (i) TAG and PE syntheses in the yeast are tightly linked; and (ii) TAG formation by the PDAT Lro1p strongly depends on PE synthesis through the CDP-Etn pathway. Moreover, it is very likely that local availability of PE in microsomes is crucial for TAG synthesis through the Lro1p reaction.

摘要

在酿酒酵母中,三酰甘油(TAG)由依赖酰基辅酶A的酰基转移酶Dga1p、Are1p、Are2p以及不依赖酰基辅酶A的磷脂:二酰甘油酰基转移酶(PDAT)Lro1p合成,Lro1p以磷脂酰乙醇胺(PE)作为首选酰基供体。在本研究中,我们通过分析四种不同的PE生物合成途径对TAG形成的贡献,来研究TAG与PE代谢之间可能存在的联系,这四种途径分别是通过Psd1p和Psd2p进行的PE从头合成、CDP - 乙醇胺(CDP - Etn)途径以及由Ale1p进行的溶血PE酰化。在以添加了5mM乙醇胺(Etn)的非发酵碳源乳酸为培养基生长的细胞中,CDP - Etn途径对细胞TAG水平的贡献最大,而其他途径的突变仅表现出较小的影响。在CDP - Etn途径存在缺陷的cki1∆dpl1∆eki1∆突变体中,细胞和微粒体中的PE水平均显著降低,而在PE生物合成途径的其他突变体中,这种氨基甘油磷脂在微粒体中的消耗则不太明显。这一观察结果很重要,因为与CDP - Etn途径的酶类似,Lro1p是内质网的一个组成部分。我们从这些结果中得出结论,在cki1∆dpl1∆eki1∆中,向PDAT Lro1p供应的PE不足是TAG水平大幅降低的主要原因。此外,我们发现cki1∆dpl1∆eki1∆中的Lro1p活性显著降低,尽管LRO1的转录未受影响。我们的研究结果表明:(i)酵母中的TAG和PE合成紧密相连;(ii)PDAT Lro1p形成TAG强烈依赖于通过CDP - Etn途径进行的PE合成。此外,微粒体中PE的局部可用性很可能对于通过Lro1p反应合成TAG至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94c9/3229975/02e01ad06753/gr1.jpg

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