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小鼠肝脏磷脂酰丝氨酸合酶-1 cDNA 的克隆与表达。在大鼠肝癌细胞中的过表达抑制了磷脂酰乙醇胺生物合成的 CDP-乙醇胺途径。

Cloning and expression of mouse liver phosphatidylserine synthase-1 cDNA. Overexpression in rat hepatoma cells inhibits the CDP-ethanolamine pathway for phosphatidylethanolamine biosynthesis.

作者信息

Stone S J, Cui Z, Vance J E

机构信息

Lipid and Lipoprotein Research Group, University of Alberta, Edmonton, AB T6G 2S2, Canada.

出版信息

J Biol Chem. 1998 Mar 27;273(13):7293-302. doi: 10.1074/jbc.273.13.7293.

Abstract

In eukaryotic cells, phosphatidylserine (PtdSer) is synthesized by two distinct synthases on the endoplasmic reticulum by a base-exchange reaction in which the polar head-group of an existing phospholipid is replaced with serine. We report the cloning and expression of a cDNA for mouse liver PtdSer synthase-1. The deduced protein sequence is >90% identical to that of PtdSer synthase-1 from Chinese hamster ovary cells and a sequence from a human myeloblast cell line. PtdSer synthase-1 cDNA was stably expressed in M.9.1.1 cells which are mutant Chinese hamster ovary cells defective in PtdSer synthase-1 activity, are ethanolamine auxotrophs, and have a reduced content of PtdSer and phosphatidylethanolamine (PtdEtn). The growth defect of M.9.1.1 cells was eliminated, and a normal phospholipid composition was restored in the absence of exogenous ethanolamine, implying that the cloned cDNA encoded PtdSer synthase. Mouse liver PtdSer synthase-1 was also expressed in McArdle 7777 rat hepatoma cells. In addition to a 3-fold higher in vitro serine-exchange activity, these cells also exhibited enhanced choline- and ethanolamine-exchange activities and incorporated more [3H]serine into PtdSer than did control cells. However, the levels of PtdSer and PtdEtn in cells overexpressing PtdSer synthase-1 activity were not increased. Excess PtdSer produced by the transfected cells was rapidly decarboxylated to PtdEtn and the degradation of PtdSer, and/or PtdEtn derived from PtdSer, was increased. Moreover, the CDP-ethanolamine pathway for PtdEtn biosynthesis was inhibited. These data suggest that (i) cellular levels of PtdSer and PtdEtn are tightly controlled, and (ii) the metabolism of PtdSer and PtdEtn is coordinately regulated to maintain phospholipid homeostasis.

摘要

在真核细胞中,磷脂酰丝氨酸(PtdSer)由内质网上两种不同的合成酶通过碱基交换反应合成,即现有磷脂的极性头部基团被丝氨酸取代。我们报道了小鼠肝脏PtdSer合成酶-1的cDNA的克隆与表达。推导的蛋白质序列与中国仓鼠卵巢细胞的PtdSer合成酶-1以及人成髓细胞系的序列的同一性超过90%。PtdSer合成酶-1 cDNA在M.9.1.1细胞中稳定表达,M.9.1.1细胞是PtdSer合成酶-1活性缺陷的突变中国仓鼠卵巢细胞,是乙醇胺营养缺陷型细胞,且PtdSer和磷脂酰乙醇胺(PtdEtn)含量降低。M.9.1.1细胞的生长缺陷被消除,在没有外源乙醇胺的情况下恢复了正常的磷脂组成,这意味着克隆的cDNA编码PtdSer合成酶。小鼠肝脏PtdSer合成酶-1也在McArdle 7777大鼠肝癌细胞中表达。除了体外丝氨酸交换活性高3倍外,这些细胞还表现出增强的胆碱和乙醇胺交换活性,并且比对照细胞将更多的[3H]丝氨酸掺入PtdSer中。然而,过表达PtdSer合成酶-1活性的细胞中PtdSer和PtdEtn的水平并未增加。转染细胞产生的过量PtdSer迅速脱羧生成PtdEtn,并且PtdSer和/或源自PtdSer的PtdEtn的降解增加。此外,PtdEtn生物合成的CDP-乙醇胺途径受到抑制。这些数据表明:(i)细胞内PtdSer和PtdEtn的水平受到严格控制;(ii)PtdSer和PtdEtn的代谢受到协同调节以维持磷脂稳态。

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