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内源性磷脂酶D2定位于RBL-2H3肥大细胞的质膜,并且通过其对油酸的特异性敏感性可与ADP核糖基化因子刺激的磷脂酶D1活性区分开来。

Endogenous phospholipase D2 localizes to the plasma membrane of RBL-2H3 mast cells and can be distinguished from ADP ribosylation factor-stimulated phospholipase D1 activity by its specific sensitivity to oleic acid.

作者信息

Sarri Elisabeth, Pardo Raul, Fensome-Green Amanda, Cockcroft Shamshad

机构信息

Department of Physiology, University College London, University Street, London WC1E 6JJ, U.K.

出版信息

Biochem J. 2003 Jan 15;369(Pt 2):319-29. doi: 10.1042/BJ20021347.

Abstract

We have examined the specificity of oleate as an activator of phospholipase D2 (PLD2) and whether it can be used to study PLD2 localization and its involvement in cell function. Oleate stimulates PLD activity in intact RBL-2H3 mast cells. Comparing PLD1- with PLD2-overexpressing cells, oleate enhanced PLD activity only in PLD2-overexpressing cells. Membranes were also sensitive to oleate and when membranes prepared from PLD1- and PLD2-overexpressing cells were examined, oleate further increased PLD activity only in membranes from PLD2-overexpressing cells. Overexpressed green fluorescent protein (GFP)-PLD2 fusion protein was localized at the plasma membrane and GFP-PLD1 was found in an intracellular vesicular compartment. Oleate was used to examine whether overexpressed PLD2 co-localized with endogenous PLD2. RBL-2H3 mast cell homogenates were fractionated on a linear sucrose gradient and analysed for both oleate-stimulated activity and ADP ribosylation factor 1-stimulated PLD1 activity. The oleate-stimulated activity co-localized with markers of the plasma membrane including the beta-subunit of the FcepsilonRI and linker for activation of T cells. Fractionation of homogenates from PLD2-overexpressing cells demonstrated that the overexpressed PLD2 fractionated in an identical location to the endogenous oleate-stimulated activity and this activity was greatly enhanced in comparison with control membranes. Examination of membranes prepared from COS-7, Jurkat and HL60 cells indicated a relationship between oleate-stimulated PLD2 activity and PLD2 immunoreactivity. We examined whether oleate could be used to activate secretion and membrane ruffling in adherent RBL-2H3 mast cells. Oleate did not stimulate secretion but did stimulate membrane ruffling, which was short-lived. We conclude that oleic acid is a selective activator of PLD2 and can be used for localization studies, but its use as an activator of PLD2 in intact cells to study function is limited due to toxicity.

摘要

我们研究了油酸作为磷脂酶D2(PLD2)激活剂的特异性,以及它是否可用于研究PLD2的定位及其在细胞功能中的作用。油酸可刺激完整的RBL-2H3肥大细胞中的PLD活性。比较过表达PLD1和PLD2的细胞,油酸仅在过表达PLD2的细胞中增强PLD活性。细胞膜对油酸也敏感,当检测过表达PLD1和PLD2的细胞制备的细胞膜时,油酸仅在过表达PLD2的细胞的细胞膜中进一步增加PLD活性。过表达的绿色荧光蛋白(GFP)-PLD2融合蛋白定位于质膜,而GFP-PLD1存在于细胞内囊泡区室中。油酸用于检测过表达的PLD2是否与内源性PLD2共定位。RBL-2H3肥大细胞匀浆在线性蔗糖梯度上进行分级分离,并分析油酸刺激的活性和ADP核糖基化因子1刺激的PLD1活性。油酸刺激的活性与质膜标志物共定位;包括FcepsilonRI的β亚基和T细胞激活连接蛋白。对过表达PLD2的细胞的匀浆进行分级分离表明,过表达的PLD2与内源性油酸刺激的活性分级分离在相同位置,并且与对照细胞膜相比,该活性大大增强。对从COS-7、Jurkat和HL60细胞制备的细胞膜的检测表明,油酸刺激的PLD2活性与PLD2免疫反应性之间存在关联。我们研究了油酸是否可用于激活贴壁的RBL-2H3肥大细胞中的分泌和膜皱襞。油酸不刺激分泌,但确实刺激膜皱襞,且这种刺激是短暂的。我们得出结论,油酸是PLD2的选择性激活剂,可用于定位研究,但由于其毒性,在完整细胞中用作PLD2激活剂来研究功能受到限制。

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