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在胶质瘤细胞质膜中,多不饱和脂肪酸掺入缩醛磷脂之前,微粒体中会先发生酰化作用。

Polyunsaturated fatty acid incorporation into plasmalogens in plasma membrane of glioma cells is preceded temporally by acylation in microsomes.

作者信息

Thomas S E, Morris S J, Xu Z, Byers D M, Palmer F B, Spence M W, Cook H W

机构信息

Department of Pediatrics, Dalhousie University, Halifax, Canada.

出版信息

Biochim Biophys Acta. 1992 Jun 22;1126(2):125-34. doi: 10.1016/0005-2760(92)90282-z.

Abstract

Plasmalogens (1-O-alk-1'-enyl-2-acyl-sn-glycero-3-phosphoethanolamine) are major phospholipids in many tissues and cells, particularly of neural origin. Using cultured C6 glioma cells and subcellular fractions isolated on Percoll gradients we investigated selectivity for esterification of several polyunsaturated fatty acids (PUFA) in the sn-2 position of plasmalogens compared to [1-14C]hexadecanol, representative of de novo synthesis of the ether-linked sn-1 position. In whole cells at a final concentration of 105 microM PUFA, 2-4 nmol plasmalogen/mg protein was labeled in 4 h and 10-14 nmol in 24 h, representing 8-15% and 35-50%, respectively, of initial plasmalogen mass. Incorporation of label from hexadecanol was lower than PUFA incorporation (20:5(n-3) greater than 20:4(n-6) greater than 18:3(n-3) much greater than 18:2(n-6)) suggesting deacylation-reacylation at the sn-2 position. Plasmalogens accounted for 50% of total cell ethanolamine phospholipids and 75% in plasma membrane. Using a novel, improved method for extraction of subcellular fractions containing Percoll, plasma membrane also was enriched in plasmalogen relative to microsomes (107.4 +/- 5.2 vs. 40.0 +/- 2.9 nmol/mg protein). Selectivity for esterification at the sn-2 position of plasmalogens with respect to chain length and unsaturation of the fatty acyl chain was similar in both subcellular fractions and reflected that of whole cells. Labeling of plasma membrane with PUFA and fatty alcohol lagged behind that of microsomes. Chase experiments in cells prelabeled with [1-14C]18:3(n-3) for 2 h showed no significant reduction of label in plasmalogen of any subcellular fraction although accumulation of label in the microsomal fraction was slowed initially. Reduction of plasmalogen label (40-50%) did occur in microsomes and plasma membrane when cells prelabeled for 24 h were switched to chase medium with or without chase fatty acid. Our data suggest that esterification of PUFA to plasmalogen may occur at the endoplasmic reticulum with subsequent translocation to plasma membrane resulting in accumulation of relatively stable pools of plasmalogen that are not readily accessible for deacylation-reacylation exchange with newly appearing PUFA. Alternatively, deacylation-reacylation may occur in a more stable phospholipid pool within the plasma membrane but would involve a slower process than at the endoplasmic reticulum.

摘要

缩醛磷脂(1-O-烷-1'-烯基-2-酰基-sn-甘油-3-磷酸乙醇胺)是许多组织和细胞中的主要磷脂,尤其是神经来源的组织和细胞。我们使用培养的C6胶质瘤细胞和通过Percoll梯度分离的亚细胞组分,研究了与[1-14C]十六醇相比,几种多不饱和脂肪酸(PUFA)在缩醛磷脂sn-2位酯化的选择性,[1-14C]十六醇代表醚连接的sn-1位的从头合成。在终浓度为105 microM PUFA的全细胞中,4小时内2-4 nmol缩醛磷脂/毫克蛋白被标记,24小时内为10-14 nmol,分别占初始缩醛磷脂质量的8-15%和35-50%。十六醇的标记掺入低于PUFA掺入(20:5(n-3)>20:4(n-6)>18:3(n-3)>>18:2(n-6)),表明在sn-2位发生了脱酰基-再酰基化。缩醛磷脂占细胞总乙醇胺磷脂的50%,在质膜中占75%。使用一种新颖、改进的方法提取含有Percoll的亚细胞组分,质膜中缩醛磷脂相对于微粒体也有所富集(107.4±5.2对40.0±2.9 nmol/毫克蛋白)。缩醛磷脂sn-2位酯化相对于脂肪酰链的链长和不饱和度的选择性在两个亚细胞组分中相似,反映了全细胞的选择性。PUFA和脂肪醇对质膜的标记落后于微粒体。用[1-14C]18:3(n-3)预标记2小时的细胞进行追踪实验表明,任何亚细胞组分的缩醛磷脂中的标记均未显著减少,尽管微粒体组分中标记的积累最初有所减缓。当预标记24小时的细胞切换到含或不含追踪脂肪酸的追踪培养基时,微粒体和质膜中的缩醛磷脂标记确实减少了(40-50%)。我们的数据表明,PUFA与缩醛磷脂的酯化可能发生在内质网,随后转运至质膜,导致相对稳定的缩醛磷脂池积累,这些缩醛磷脂不易与新出现的PUFA进行脱酰基-再酰基化交换。或者,脱酰基-再酰基化可能发生在质膜内更稳定的磷脂池中,但这一过程比内质网中的过程要慢。

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