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分化的 PLB-985 细胞的 Phox 活性被 Prdx6-PLA2 的 PLA2 活性以激动剂特异性的方式增强。

Phox activity of differentiated PLB-985 cells is enhanced, in an agonist specific manner, by the PLA2 activity of Prdx6-PLA2.

机构信息

Bonfils Blood Center, Denver, CO 80230, USA.

出版信息

Eur J Immunol. 2012 Jun;42(6):1609-17. doi: 10.1002/eji.201142157.

Abstract

Peroxiredoxin 6-phospholipase A(2) (Prdx6-PLA(2) ) is a bi-functional enzyme with peroxi-redoxin (Prdx) and phospholipase A(2) (PLA(2) ) activities. To investigate its impact on phagocyte NADPH oxidase (phox) activity in a neutrophil model, the protein was knocked down in PLB-985 cells using stable expression of a small hairpin RNA (shRNA) and phox activity was monitored after cell differentiation. The knockdown cells had reduced oxidase activity in response to stimulation with the formylated peptide fMLF, but the response to the phorbol ester PMA was unchanged. Reintroduction of shRNA-resistant Prdx6-PLA(2) into the knockdown cells by stable transfection with a Prdx6-PLA(2) expression plasmid restored the fMLF response, as did reintroduction of Prdx6-PLA(2) mutated in the Prdx active site; reintroduction of PLA(2) active site mutants, however, failed to restore the response. Thus, the PLA(2) activity of Prdx6-PLA(2) in intact cells mediates its ability to enhance phox activity in response to fMLF. In combination with previous publications by other groups, our work indicates that various PLA(2) isoforms can enhance oxidase activity but they are differentially important in different cell types and in the response to different agonists.

摘要

过氧化物酶 6-磷酸脂酶 A(2)(Prdx6-PLA(2))是一种具有过氧化物酶(Prdx)和磷脂酶 A(2)(PLA(2))活性的双功能酶。为了研究其在中性粒细胞模型中对吞噬细胞 NADPH 氧化酶(phox)活性的影响,使用小发夹 RNA(shRNA)的稳定表达在 PLB-985 细胞中敲低了该蛋白,并在细胞分化后监测 phox 活性。与 fMLF 刺激相比,敲低细胞的氧化酶活性降低,但对佛波酯 PMA 的反应不变。通过用 Prdx6-PLA(2)表达质粒进行稳定转染将 shRNA 抗性 Prdx6-PLA(2)重新引入敲低细胞中,恢复了 fMLF 的反应,而 Prdx6-PLA(2)在 Prdx 活性位点突变也恢复了该反应;然而,引入 PLA(2)活性位点突变体则未能恢复该反应。因此,完整细胞中 Prdx6-PLA(2)的 PLA(2)活性介导了其增强 fMLF 反应中 phox 活性的能力。结合其他小组的先前出版物,我们的工作表明,各种 PLA(2)同工酶可以增强氧化酶活性,但它们在不同细胞类型和对不同激动剂的反应中具有不同的重要性。

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