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人诱导型一氧化氮合酶在四氢生物蝶呤(H4B)缺陷细胞系中的表达:H4B促进酶亚基组装成活性二聚体。

Expression of human inducible nitric oxide synthase in a tetrahydrobiopterin (H4B)-deficient cell line: H4B promotes assembly of enzyme subunits into an active dimer.

作者信息

Tzeng E, Billiar T R, Robbins P D, Loftus M, Stuehr D J

机构信息

Department of Surgery, University of Pittsburgh, PA 15261, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Dec 5;92(25):11771-5. doi: 10.1073/pnas.92.25.11771.

Abstract

Murine inducible nitric oxide (NO) synthase (iNOS) is catalytically active only in dimeric form. Assembly of its purified subunits into a dimer requires H4B. To understand the structure-activity relationships of human iNOS, we constitutively expressed recombinant human iNOS in NIH 3T3 cells by using a retroviral vector. These cells are deficient in de novo H4B biosynthesis and the role of H4B in the expression and assembly of active iNOS in an intact cell system could be studied. In the absence of added H4B, NO synthesis by the cells was minimal, whereas cells grown with supplemental H4B or the H4B precursor sepiapterin generated NO (74.1 and 63.3 nmol of nitrite per 10(6) cells per 24 h, respectively). NO synthesis correlated with an increase in intracellular H4B but no increase in iNOS protein. Instead, an increased percentage of dimeric iNOS was observed, rising from 20% in cytosols from unsupplemented cells to 66% in H4B-supplemented cell cytosols. In all cases, only dimeric iNOS displayed catalytic activity. Cytosols prepared from H4B-deficient cells exhibited little iNOS activity but acquired activity during a 60- to 120-min incubation with H4B, reaching final activities of 60-72 pmol of citrulline per mg of protein per min. Reconstitution of cytosolic NO synthesis activity was associated with conversion of monomers into dimeric iNOS during the incubation. Thus, human iNOS subunits dimerize to form an active enzyme, and H4B plays a critical role in promoting dimerization in intact cells. This reveals a post-translational mechanism by which intracellular H4B can regulate iNOS expression.

摘要

小鼠诱导型一氧化氮(NO)合酶(iNOS)仅以二聚体形式具有催化活性。其纯化的亚基组装成二聚体需要四氢生物蝶呤(H4B)。为了了解人iNOS的结构-活性关系,我们使用逆转录病毒载体在NIH 3T3细胞中组成型表达重组人iNOS。这些细胞缺乏从头合成H4B的能力,因此可以研究H4B在完整细胞系统中活性iNOS的表达和组装中的作用。在不添加H4B的情况下,细胞产生的NO极少,而用补充H4B或H4B前体蝶酰三谷氨酸培养的细胞则产生NO(每24小时每10⁶个细胞分别产生74.1和63.3 nmol亚硝酸盐)。NO的合成与细胞内H4B的增加相关,但iNOS蛋白没有增加。相反,观察到二聚体iNOS的比例增加,从未补充细胞的胞质溶胶中的20%上升到补充H4B的细胞胞质溶胶中的66%。在所有情况下,只有二聚体iNOS显示出催化活性。从缺乏H4B的细胞制备的胞质溶胶显示出很少的iNOS活性,但在与H4B孵育60至120分钟期间获得了活性,最终活性达到每分钟每毫克蛋白质60至72 pmol瓜氨酸。在孵育过程中,胞质溶胶中NO合成活性的重建与单体转化为二聚体iNOS相关。因此,人iNOS亚基二聚化形成活性酶,H4B在促进完整细胞中的二聚化中起关键作用。这揭示了一种细胞内H4B可以调节iNOS表达的翻译后机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b176/40484/f050cddbc547/pnas01503-0461-a.jpg

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