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Butyric acid-induced differentiation of HL-60 cells increases the expression of a single lysophospholipase.

机译:丁酸诱导的HL-60细胞分化可增加单个溶血磷脂酶的表达。

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摘要

Treatment of HL-60 cells with 0.5 mM-butyric acid resulted in morphological changes, including the formation of cytoplasmic granules, nuclear condensation and segmentation. These differentiated cells had an elevated phospholipase A2 activity and an increased capacity to synthesize a variety of eicosanoids, including both lipoxygenase and cyclooxygenase products. Phospholipase A2-mediated release of arachidonic acid is accompanied by an equimolar production of potentially cytotoxic lysophospholipid. In association with the differentiation process, there was a 2-3-fold increase in lysophospholipase activity. Subsequent studies were undertaken to identify and characterize the lysophospholipases in this cell system, with 1-[1-14C]palmitoyl-2-hydroxy-sn-glycero-3-phosphocholine as substrate. Hydrophobic chromatography of both undifferentiated and differentiated cell extracts revealed three peaks of enzyme activity. Extracts of differentiated cells contained a dramatic increase in activity contained in peak 2. The increase in enzymic activity of peak 2 appeared to account for the increase in total lysophospholipase activity found in the differentiated cell homogenates. The lysophospholipases contained in peaks 2 and 3 were purified to homogeneity and were 20 and 22 kDa respectively, as determined by denaturing polyacrylamide-gel electrophoresis. Peaks 2 and 3 were similar on the basis of amino acid composition, but had distinctive C-terminal peptide amino acid sequences. Enzymic characterization of these proteins demonstrated that there was no detectable level of non-specific esterase, acyltransferase or transacylase activity associated with these proteins. We concluded that peak 2 lysophospholipase is regulated by differentiation in HL-60 cells and may play an important role in protecting these cells from the cytolytic effects of the lysophospholipids produced by the activation of phospholipase A2.
机译:用0.5 mM丁酸处理HL-60细胞会导致形态学变化,包括细胞质颗粒的形成,核浓缩和分段。这些分化的细胞具有升高的磷脂酶A2活性和增强的合成多种类花生酸的能力,包括脂加氧酶和环加氧酶产物。磷脂酶A2介导的花生四烯酸的释放伴随着等摩尔产生潜在的细胞毒性溶血磷脂。与分化过程相关,溶血磷脂酶活性增加了2-3倍。随后进行了研究以鉴定和表征该细胞系统中的溶血磷脂酶,并以1- [1-14C]棕榈酰基-2-羟基-sn-甘油-3-磷酸胆碱为底物。未分化和分化的细胞提取物的疏水色谱显示酶活性的三个峰。分化细胞的提取物在峰2中包含的活性显着增加。峰2的酶活性的增加似乎解释了在分化细胞匀浆中发现的总溶血磷脂酶活性的增加。通过变性聚丙烯酰胺-凝胶电泳测定,将峰2和峰3中包含的溶血磷脂酶纯化至均一,分别为20和22 kDa。基于氨基酸组成,峰2和峰3相似,但是具有独特的C末端肽氨基酸序列。这些蛋白质的酶学表征表明,没有检测到与这些蛋白质相关的非特异性酯酶,酰基转移酶或转酰基酶活性。我们得出的结论是,峰2溶血磷脂酶受HL-60细胞分化的调节,并可能在保护这些细胞免受激活磷脂酶A2产生的溶血磷脂的溶细胞作用中发挥重要作用。

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