首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Activation of H+ conductance in neutrophils requires assembly of components of the respiratory burst oxidase but not its redox function.
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Activation of H+ conductance in neutrophils requires assembly of components of the respiratory burst oxidase but not its redox function.

机译:中性粒细胞中H +电导的激活需要组装呼吸爆发氧化酶的组件但不需要其氧化还原功能。

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摘要

In phagocytes, superoxide generation by the NADPH oxidase is accompanied by metabolic acid production. Cytoplasmic acidification during this metabolic burst is prevented by a combination of H+ extrusion mechanisms, including a unique H+ conductance. NADPH oxidase is deficient in chronic granulomatous disease (CGD) patients. The burst of acid production is absent in CGD patients lacking the 47-kD (p47-phox) or the 91-kD (gp91-phox) subunits of the oxidase. Activation of the H+ conductance is also defective in these patients suggesting that (a) the oxidase itself undertakes H+ translocation or (b) oxidase assembly is required to stimulate a separate H+ conducting entity. To discern between these possibilities, three rare forms of CGD were studied. In neutrophils expressing nonfunctional cytochrome b, the conductance was activated to near-normal levels, implying that functional oxidase is not required to activate H+ extrusion. CGD cells expressing diminished amounts of cytochrome displayed H+ conductance approaching normal levels, suggesting that the oxidase itself does not translocate H+. Finally, the conductance was only partially inhibited in patients lacking the 67-kD subunit, indicating that this component is not essential for stimulation of H+ transport. We propose that normal assembly of the oxidase subunits is required for optimal activation of a closely associated but distinct H+ conducting entity.
机译:在吞噬细胞中,NADPH氧化酶产生的超氧化物伴随着代谢酸的产生。 H +挤压机制的结合(包括独特的H +电导)可防止这种代谢爆发期间的细胞质酸化。 NADPH氧化酶在慢性肉芽肿病(CGD)患者中缺乏。在缺少氧化酶47-kD(p47-phox)或91-kD(gp91-phox)亚基的CGD患者中,不会产生大量的酸。这些患者中H +电导的激活也存在缺陷,表明(a)氧化酶本身进行H +易位,或(b)需要氧化酶组装来刺激单独的H +导电实体。为了区分这些可能性,研究了三种罕见的CGD形式。在表达非功能性细胞色素b的嗜中性粒细胞中,电导被激活至接近正常水平,这意味着激活H +挤出不需要功能性氧化酶。表达减少量的细胞色素的CGD细胞显示H +电导率接近正常水平,表明氧化酶本身不会移位H +。最后,在缺乏67 kD亚基的患者中,电导仅被部分抑制,表明该成分对于刺激H +转运不是必需的。我们建议氧化酶亚基的正常组装是紧密关联但独特的H +传导实体的最佳激活所必需的。

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