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Hypoxic induction of gene expression in chronic granulomatous disease-derived B-cell lines: oxygen sensing is independent of the cytochrome b558-containing nicotinamide adenine dinucleotide phosphate oxidase

机译:缺氧诱导慢性肉芽肿性疾病来源的B细胞系中基因表达的缺氧:氧传感独立于包含细胞色素b558的烟酰胺腺嘌呤二核苷酸磷酸氧化酶

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摘要

Reduced oxygenation of a variety of cells results in transcriptional upregulation of several genes, including the hematopoietic hormone erythropoietin, the angiogenic vascular endothelial growth factor (VEGF), and glycolytic enzymes such as aldolase. Recently, the heme protein cytochrome b558 of the nicotinamide adenine dinucleotide phosphate (NADPH) oxidase complex has been proposed as a key component of the oxygen-sensing mechanism. Cytochrome b558 consists of the p22phox and gp91phox subunits and is essential for superoxide generation in phagocytes and B lymphocytes. Mutations in these subunits result in cytochrome b558-negative chronic granulomatous disease (cytb- CGD), an inherited disorder in humans characterized by reduced microbicidal activity due to deficient superoxide generation. To test whether NADPH oxidase is involved in oxygen sensing, we exposed wild-type B-cell lines as well as cytb- CGD-derived B cell lines, deficient in either p22phox or gp91phox, to hypoxia (1% oxygen) or CoCl2 (100 mumol/L) and compared the mRNA levels of VEGF and aldolase with the untreated controls. Northern blot analysis revealed unimpaired basal and inducible expression of VEGF and aldolase mRNA in all four cytb- CGD-derived B-cell lines compared with wild-type cells. Furthermore, reconstitution of cytochrome b558 expression in cytb- CGD-derived B cells by transfection with p22phox or gp91phox expression vectors did not modify VEGF and aldolase mRNA expression. Thus, cytochrome b558 of the NADPH oxidase complex appears not to be essential for hypoxia-activated gene expression and can be excluded as a candidate for the putative universal oxygen sensor.
机译:各种细胞氧合的减少导致几种基因的转录上调,包括造血激素促红细胞生成素,血管生成性血管内皮生长因子(VEGF)和糖酵解酶(如醛缩酶)。近来,已经提出烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶复合物的血红素蛋白细胞色素b558作为氧传感机制的关键成分。细胞色素b558由p22phox和gp91phox亚基组成,对于吞噬细胞和B淋巴细胞中的超氧化物生成至关重要。这些亚基的突变会导致细胞色素b558阴性的慢性肉芽肿性疾病(cytb-CGD),这是人类遗传性疾病,其特征在于由于过氧化物的产生不足,杀菌活性降低。为了测试NADPH氧化酶是否参与氧气感应,我们将缺氧p2phox或gp91phox的野生型B细胞系和cytb CGD衍生的B细胞系暴露于低氧(1%氧气)或CoCl2(100 (μmol/ L),并将VEGF和醛缩酶的mRNA水平与未处理的对照组进行比较。 Northern印迹分析显示与野生型细胞相比,在所有四个cytb-CGD来源的B细胞系中,VEGF和醛缩酶mRNA的基础和诱导表达均未受损。此外,通过用p22phox或gp91phox表达载体转染在cytb-CGD衍生的B细胞中重建细胞色素b558表达不会修饰VEGF和醛缩酶mRNA表达。因此,NADPH氧化酶复合物的细胞色素b558似乎不是缺氧激活基因表达所必需的,可以排除为公认的通用氧传感器的候选者。

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