首页> 外文期刊>The Biochemical Journal >LOW NADPH OXIDASE ACTIVITY IN EPSTEIN-BARR-VIRUS-IMMORTALIZED B-LYMPHOCYTES IS DUE TO A POST-TRANSCRIPTIONAL BLOCK IN EXPRESSION OF CYTOCHROME B(558)
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LOW NADPH OXIDASE ACTIVITY IN EPSTEIN-BARR-VIRUS-IMMORTALIZED B-LYMPHOCYTES IS DUE TO A POST-TRANSCRIPTIONAL BLOCK IN EXPRESSION OF CYTOCHROME B(558)

机译:EB病毒免疫固定化的B淋巴细胞中低NADPH氧化酶活性归因于转录后的细胞色素B表达(558)

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The NADPH oxidase of phagocytes is known to be expressed in Epstein-Barr-virus-transformed B-lymphocytes, albeit at levels only approx. 5% of those found in neutrophils. We have investigated the basis of this low level of expression and find that all four specific components of the NADPH oxidase are expressed in B-lymphocytes, but only p47-phox protein attains levels equivalent with those found in neutrophils. This component was shown to phosphorylate and translocate to the membrane normally on activation. The other cytosolic component, p67-phox, did show a deficit, and by supplementing a B-cell cytosol extract with recombinant p67-phox, this was shown to account for the somewhat reduced activity of B-cell cytosol in a cell-free oxidase system. The cell-free analysis also clearly located the major deficiency in superoxide-generating capacity of B-lymphocytes to the membrane. Western blotting of membrane proteins revealed major reductions in the amount of cytochrome b(558). Analysis of the levels of mRNA for both subunits of cytochrome b(558), however, showed levels greater than expected. Significantly more mRNA for gp91-phox was present in B-cells than in undifferentiated HL60 cells, although it was not quite as abundant as in differentiated HL60 cells, which are capable of producing large amounts of superoxide. We conclude that the failure of B-lymphocytes to generate amounts of superoxide equivalent to those generated by neutrophils is primarily due to a post-transcriptionally determined block to the accumulation of cytochrome b(558).
机译:吞噬细胞的NADPH氧化酶已知在爱泼斯坦-巴尔病毒转化的B淋巴细胞中表达,尽管其水平仅为大约2。在嗜中性粒细胞中发现的占5%。我们研究了这种低水平表达的基础,发现NADPH氧化酶的所有四个特定成分都在B淋巴细胞中表达,但是只有p47-phox蛋白达到了与嗜中性粒细胞中相同的水平。已显示该组分通常在活化时磷酸化并易位至膜。其他胞质成分p67-phox确实表现出不足,并且通过向B细胞溶质提取物补充重组p67-phox,这表明在无细胞氧化酶中B细胞溶质的活性有所降低。系统。无细胞分析还清楚地定位了B淋巴细胞超氧化物生成膜的主要缺陷。膜蛋白的蛋白质印迹显示细胞色素b(558)的量大大减少。但是,对细胞色素b(558)的两个亚基的mRNA水平进行的分析表明,该水平高于预期。与未分化的HL60细胞相比,B细胞中存在更多的gp91-phox mRNA,尽管它不如分化的HL60细胞丰富,后者能够产生大量的超氧化物。我们得出的结论是,B淋巴细胞无法产生与嗜中性粒细胞产生的超氧化物相当的超氧化物,其主要原因是转录后确定的对细胞色素b的积累的阻断(558)。

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