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对苯醌是苯的一种反应性代谢产物,它通过抑制加工酶、钙蛋白酶和白细胞介素-1β转化酶,阻止前白细胞介素-1α和-1β加工成活性细胞因子。

p-Benzoquinone, a reactive metabolite of benzene, prevents the processing of pre-interleukins-1 alpha and -1 beta to active cytokines by inhibition of the processing enzymes, calpain, and interleukin-1 beta converting enzyme.

作者信息

Kalf G F, Renz J F, Niculescu R

机构信息

Department of Biochemistry and Molecular Pharmacology, Jefferson Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

出版信息

Environ Health Perspect. 1996 Dec;104 Suppl 6(Suppl 6):1251-6. doi: 10.1289/ehp.961041251.

Abstract

Chronic exposure of humans of benzene affects hematopoietic stem and progenitor cells and leads to aplastic anemia. The stromal macrophage, a target of benzene toxicity, secretes interleukin-1 (IL-1), which induces the stromal fibroblast to synthesize hematopoietic colony-stimulating factors. In a mouse model, benzene causes an acute marrow hypocellularity that can be prevented by the concomitant administration of IL-1 alpha. The ability of benzene to interfere with the production and secretion of IL-1 alpha was tested. Stromal macrophages from benzene-treated mice were capable of the transcription to the IL-1 alpha gene and the translation of the message but showed an inability to process the 34-kDa pre-IL-1 alpha precursor to the 17-kDa biologically active cytokine. Treatment of normal murine stromal macrophages in culture with hydroquinone (HQ) also showed an inhibition in processing of pre-IL-1 alpha. Hydroquinone is oxidized by a peroxidase-mediated reaction in the stromal macrophage to p-benzoquinone, which interacts with the sulfhydryl (SH) groups of proteins and was shown to completely inhibit the activity of calpain, the SH-dependent protease that cleaves pre-IL-1 alpha. In a similar manner, HQ, via peroxidase oxidation to p-benzoquinone, was capable of preventing the IL-1 beta autocrine stimulation of growth of human B1 myeloid tumor cells by preventing the processing of pre-IL-1 beta to mature cytokine. Benzoquinone was also shown to completely inhibit the ability of the SH-dependent IL-1 beta converting enzyme. Thus benzene-induced bone marrow hypocellularity may result from apoptosis of hematopoietic progenitor cells brought about by lack of essential cytokines and deficient IL-1 alpha production subsequent to the inhibition of calpain by p-benzoquinone and the prevention of pre-IL-1 processing.

摘要

人类长期接触苯会影响造血干细胞和祖细胞,并导致再生障碍性贫血。基质巨噬细胞是苯毒性的靶点,可分泌白细胞介素-1(IL-1),后者诱导基质成纤维细胞合成造血集落刺激因子。在小鼠模型中,苯会导致急性骨髓细胞减少,而同时给予IL-1α可预防这种情况。对苯干扰IL-1α产生和分泌的能力进行了测试。来自经苯处理小鼠的基质巨噬细胞能够转录IL-1α基因并翻译信息,但无法将34 kDa的前IL-1α前体加工成17 kDa的生物活性细胞因子。用对苯二酚(HQ)处理培养中的正常小鼠基质巨噬细胞也显示出前IL-1α加工受到抑制。对苯二酚在基质巨噬细胞中通过过氧化物酶介导的反应被氧化为对苯醌,后者与蛋白质的巯基(SH)基团相互作用,并被证明可完全抑制钙蛋白酶的活性,钙蛋白酶是一种依赖SH的蛋白酶,可切割前IL-1α。以类似的方式,HQ通过过氧化物酶氧化为对苯醌,能够通过阻止前IL-1β加工成成熟细胞因子来防止IL-1β对人B1髓样肿瘤细胞生长的自分泌刺激。对苯醌也被证明可完全抑制依赖SH的IL-1β转化酶的能力。因此,苯诱导的骨髓细胞减少可能是由于缺乏必需细胞因子以及对苯醌抑制钙蛋白酶和阻止前IL-1加工后导致IL-1α产生不足,从而引起造血祖细胞凋亡所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/186f/1469767/608b5ada1dfc/envhper00349-0133-a.jpg

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